40 results on '"Le Tiec, Alexandre"'
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2. High-Accuracy Comparison Between the Post-Newtonian and Self-Force Dynamics of Black-Hole Binaries
- Author
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Blanchet, Luc, Detweiler, Steven, Le Tiec, Alexandre, Whiting, Bernard F., Blanchet, Luc, editor, Spallicci, Alessandro, editor, and Whiting, Bernard, editor
- Published
- 2011
- Full Text
- View/download PDF
3. Theory of Gravitational Waves
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Le Tiec, Alexandre, primary and Novak, Jérôme, additional
- Published
- 2017
- Full Text
- View/download PDF
4. First law of mechanics for spinning compact binaries: Dipolar order
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Ramond, Paul, primary and Le Tiec, Alexandre, additional
- Published
- 2022
- Full Text
- View/download PDF
5. Multipolar particles in helically symmetric spacetimes
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Ramond, Paul, primary and Le Tiec, Alexandre, additional
- Published
- 2021
- Full Text
- View/download PDF
6. Tidal Love numbers of Kerr black holes
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Le Tiec, Alexandre, primary, Casals, Marc, additional, and Franzin, Edgardo, additional
- Published
- 2021
- Full Text
- View/download PDF
7. Spinning Black Holes Fall in Love
- Author
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Le Tiec, Alexandre, primary and Casals, Marc, additional
- Published
- 2021
- Full Text
- View/download PDF
8. High-Accuracy Comparison Between the Post-Newtonian and Self-Force Dynamics of Black-Hole Binaries
- Author
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Blanchet, Luc, primary, Detweiler, Steven, additional, Le Tiec, Alexandre, additional, and Whiting, Bernard F., additional
- Published
- 2009
- Full Text
- View/download PDF
9. Black holes, gravitational waves and fundamental physics: A roadmap
- Author
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Barack, Leor, Cardoso, Vitor, Nissanke, Samaya, Sotiriou, Thomas P, Askar, Abbas, Belczynski, Chris, Bertone, Gianfranco, Bon, Edi, Blas, Diego, Brito, Richard, Bulik, Tomasz, Burrage, Clare, Byrnes, Christian T, Caprini, Chiara, Chernyakova, Masha, Chru?ciel, Piotr, Colpi, Monica, Ferrari, Valeria, Gaggero, Daniele, Gair, Jonathan, Hassan, S F, Heisenberg, Lavinia, Hendry, Martin, Heng, Ik Siong, Herdeiro, Carlos, Hinderer, Tanja, Horesh, Assaf, Kavanagh, Bradley J, Kocsis, Bence, Kramer, Michael, Le Tiec, Alexandre, Mingarelli, Chiara, Nardini, Germano, Nelemans, Gijs, Palenzuela, Carlos, Pani, Paolo, Perego, Albino, Porter, Edward K, Rossi, Elena M, Schmidt, Patricia, Sesana, Alberto, Sperhake, Ulrich, Stamerra, Antonio, Stein, Leo C, Tamanini, Nicola, Tauris, Thomas M, Vincent, Frederic, Volonteri, Marta, Wardell, Barry, Wex, Norbert, Yagi, Kent, Abdelsalhin, Tiziano, Amaro-Seoane, Pau, Annulli, Lorenzo, Arca-Sedda, Manuel, Bah, Ibrahima, Barausse, Enrico, Barakovic, Elvis, Benkel, Robert, Bennett, Charles L, Bernard, Laura, Bernuzzi, Sebastiano, Berry, Christopher P L, Berti, Emanuele, Bezares, Miguel, Blanco-Pillado, Jose Juan, Bonetti, Matteo, Bosnjak, Zeljka, Bricman, Katja, Capelo, Pedro R, Carloni, Sante, Charmousis, Christos, Chaty, Sylvain, Clerici, Aurora, Coates, Andrew, Colleoni, Marta, Collodel, Lucas G, Cook, William, Correia, Miguel, Czinner, Viktor G, Destounis, Kyriakos, Dialektopoulos, Kostas, Doneva, Daniela, Dotti, Massimo, Drew, Amelia, Eckner, Christopher, Edholm, James, Emparan, Roberto, Erdem, Recai, Ferreira, Miguel, Ferreira, Pedro G, Finch, Andrew, Font, Jose A, Franchini, Nicola, Fransen, Kwinten, Ganguly, Apratim, Gerosa, Davide, Glampedakis, Kostas, Gomboc, Andreja, Goobar, Ariel, Gualtieri, Leonardo, Guendelman, Eduardo, Haardt, Francesco, Harmark, Troels, Hejda, Filip, Hertog, Thomas, Hopper, Seth, Husa, Sascha, Ihanec, Nada, Ikeda, Taishi, Jaodand, Amruta, Jetzer, Philippe, Jimenez-Forteza, Xisco, Kamionkowski, Marc, Kaplan, David E, Kazantzidis, Stelios, Kimura, Masashi, Kobayashi, Shiho, Kokkotas, Kostas, Krolik, Julian, Kunz, Jutta, Lasky, Paul, Levi Said, Jackson, Liberati, Stefano, Lopes, Jorge, Luna, Raimon, Ma, Yin-Zhe, Maggio, Elisa, Mangiagli, Alberto, Montero, Marina Martinez, Maselli, Andrea, Mayer, Lucio, Mazumdar, Anupam, Messenger, Christopher, Minamitsuji, Masato, Moore, Christopher J, Mota, David, Nampalliwar, Sourabh, Nerozzi, Andrea, Nichols, David, Nissimov, Emil, Obergaulinger, Martin, Obers, Niels A, Oliveri, Roberto, Pappas, George, Pasic, Vedad, Peiris, Hiranya, Petrushevska, Tanja, Pollney, Denis, Pratten, Geraint, Rakic, Nemanja, Racz, Istvan, Radia, Miren, Ramazano?lu, Fethi M, Ramos-Buades, Antoni, Raposo, Guilherme, Rogatko, Marek, Rosca-Mead, Roxana, Rosinska, Dorota, Rosswog, Stephan, Ruiz-Morales, Ester, Sakellariadou, Mairi, Sharan Salafia, Om, Samajdar, Anuradha, Sintes, Alicia, Smole, Majda, Sopuerta, Carlos, Souza-Lima, Rafael, Stalevski, Marko, Stergioulas, Nikolaos, Stevens, Chris, Tamfal, Tomas, Tsygankov, Sergey, Valiante, Rosa, van de Meent, Maarten, Verbin, Yosef, Vercnocke, Bert, Vernieri, Daniele, Vicente, Rodrigo, Vitagliano, Vincenzo, Weltman, Amanda, Whiting, Bernard, Williamson, Andrew, Witek, Helvi, Wojnar, Aneta, Yakut, Kadri, Yan, Haopeng, Yazadjiev, Stoycho, Zaharijas, Gabrijela, Torres-Forne, Alejandro, Unluturk, Kivanc, and Velhinho, Jose
- Subjects
High Energy Physics - Theory ,General Relativity and Quantum Cosmology ,High Energy Astrophysical Phenomena - Abstract
© 2019 IOP Publishing Ltd. The grand challenges of contemporary fundamental physics-dark matter, dark energy, vacuum energy, inflation and early universe cosmology, singularities and the hierarchy problem-all involve gravity as a key component. And of all gravitational phenomena, black holes stand out in their elegant simplicity, while harbouring some of the most remarkable predictions of General Relativity: event horizons, singularities and ergoregions. The hitherto invisible landscape of the gravitational Universe is being unveiled before our eyes: the historical direct detection of gravitational waves by the LIGO-Virgo collaboration marks the dawn of a new era of scientific exploration. Gravitational-wave astronomy will allow us to test models of black hole formation, growth and evolution, as well as models of gravitational-wave generation and propagation. It will provide evidence for event horizons and ergoregions, test the theory of General Relativity itself, and may reveal the existence of new fundamental fields. The synthesis of these results has the potential to radically reshape our understanding of the cosmos and of the laws of Nature. The purpose of this work is to present a concise, yet comprehensive overview of the state of the art in the relevant fields of research, summarize important open problems, and lay out a roadmap for future progress. This write-up is an initiative taken within the framework of the European Action on 'Black holes, Gravitational waves and Fundamental Physics'.
- Published
- 2019
10. Black holes, gravitational waves and fundamental physics: A roadmap
- Author
-
Barack, L, Cardoso, V, Nissanke, S, Sotiriou, T, Askar, A, Belczynski, C, Bertone, G, Bon, E, Blas, D, Brito, R, Bulik, T, Burrage, C, Byrnes, C, Caprini, C, Chernyakova, M, Chruściel, P, Colpi, M, Ferrari, V, Gaggero, D, Gair, J, García-Bellido, J, Hassan, S, Heisenberg, L, Hendry, M, Heng, I, Herdeiro, C, Hinderer, T, Horesh, A, Kavanagh, B, Kocsis, B, Kramer, M, Le Tiec, A, Mingarelli, C, Nardini, G, Nelemans, G, Palenzuela, C, Pani, P, Perego, A, Porter, E, Rossi, E, Schmidt, P, Sesana, A, Sperhake, U, Stamerra, A, Stein, L, Tamanini, N, Tauris, T, Urena-López, L, Vincent, F, Volonteri, M, Wardell, B, Wex, N, Yagi, K, Abdelsalhin, T, Aloy, M, Amaro-Seoane, P, Annulli, L, Arca-Sedda, M, Bah, I, Barausse, E, Barakovic, E, Benkel, R, Bennett, C, Bernard, L, Bernuzzi, S, Berry, C, Berti, E, Bezares, M, Blanco-Pillado, J, Blázquez-Salcedo, J, Bonetti, M, Bošković, M, Bosnjak, Z, Bricman, K, Brügmann, B, Capelo, P, Carloni, S, Cerdá-Durán, P, Charmousis, C, Chaty, S, Clerici, A, Coates, A, Colleoni, M, Collodel, L, Compère, G, Cook, W, Cordero-Carrión, I, Correia, M, de la Cruz-Dombriz, Á, Czinner, V, Destounis, K, Dialektopoulos, K, Doneva, D, Dotti, M, Drew, A, Eckner, C, Edholm, J, Emparan, R, Erdem, R, Ferreira, M, Ferreira, P, Finch, A, Font, J, Franchini, N, Fransen, K, Gal’Tsov, D, Ganguly, A, Gerosa, D, Glampedakis, K, Gomboc, A, Goobar, A, Gualtieri, L, Guendelman, E, Haardt, F, Harmark, T, Hejda, F, Hertog, T, Hopper, S, Husa, S, Ihanec, N, Ikeda, T, Jaodand, A, Jetzer, P, Jimenez-Forteza, X, Kamionkowski, M, Kaplan, D, Kazantzidis, S, Kimura, M, Kobayashi, S, Kokkotas, K, Krolik, J, Kunz, J, Lämmerzahl, C, Lasky, P, Lemos, J, Levi Said, J, Liberati, S, Lopes, J, Luna, R, Ma, Y, Maggio, E, Mangiagli, A, Montero, M, Maselli, A, Mayer, L, Mazumdar, A, Messenger, C, Ménard, B, Minamitsuji, M, Moore, C, Mota, D, Nampalliwar, S, Nerozzi, A, Nichols, D, Nissimov, E, Obergaulinger, M, Obers, N, Oliveri, R, Pappas, G, Pasic, V, Peiris, H, Petrushevska, T, Pollney, D, Pratten, G, Rakic, N, Racz, I, Radia, M, Ramazanoğlu, F, Ramos-Buades, A, Raposo, G, Rogatko, M, Rosca-Mead, R, Rosinska, D, Rosswog, S, Ruiz-Morales, E, Sakellariadou, M, Sanchis-Gual, N, Sharan Salafia, O, Samajdar, A, Sintes, A, Smole, M, Sopuerta, C, Souza-Lima, R, Stalevski, M, Stergioulas, N, Stevens, C, Tamfal, T, Torres-Forné, A, Tsygankov, S, İ Ünlütürk, K, Valiante, R, van de Meent, M, Velhinho, J, Verbin, Y, Vercnocke, B, Vernieri, D, Vicente, R, Vitagliano, V, Weltman, A, Whiting, B, Williamson, A, Witek, H, Wojnar, A, Yakut, K, Yan, H, Yazadjiev, S, Zaharijas, G, Zilhão, M, Barack, Leor, Cardoso, Vitor, Nissanke, Samaya, Sotiriou, Thomas P, Askar, Abbas, Belczynski, Chris, Bertone, Gianfranco, Bon, Edi, Blas, Diego, Brito, Richard, Bulik, Tomasz, Burrage, Clare, Byrnes, Christian T, Caprini, Chiara, Chernyakova, Masha, Chruściel, Piotr, Colpi, Monica, Ferrari, Valeria, Gaggero, Daniele, Gair, Jonathan, García-Bellido, Juan, Hassan, S F, Heisenberg, Lavinia, Hendry, Martin, Heng, Ik Siong, Herdeiro, Carlos, Hinderer, Tanja, Horesh, Assaf, Kavanagh, Bradley J, Kocsis, Bence, Kramer, Michael, Le Tiec, Alexandre, Mingarelli, Chiara, Nardini, Germano, Nelemans, Gijs, Palenzuela, Carlos, Pani, Paolo, Perego, Albino, Porter, Edward K, Rossi, Elena M, Schmidt, Patricia, Sesana, Alberto, Sperhake, Ulrich, Stamerra, Antonio, Stein, Leo C, Tamanini, Nicola, Tauris, Thomas M, Urena-López, L Arturo, Vincent, Frederic, Volonteri, Marta, Wardell, Barry, Wex, Norbert, Yagi, Kent, Abdelsalhin, Tiziano, Aloy, Miguel Ángel, Amaro-Seoane, Pau, Annulli, Lorenzo, Arca-Sedda, Manuel, Bah, Ibrahima, Barausse, Enrico, Barakovic, Elvis, Benkel, Robert, Bennett, Charles L, Bernard, Laura, Bernuzzi, Sebastiano, Berry, Christopher P L, Berti, Emanuele, Bezares, Miguel, Blanco-Pillado, Jose Juan, Blázquez-Salcedo, Jose Luis, Bonetti, Matteo, Bošković, Mateja, Bosnjak, Zeljka, Bricman, Katja, Brügmann, Bernd, Capelo, Pedro R, Carloni, Sante, Cerdá-Durán, Pablo, Charmousis, Christos, Chaty, Sylvain, Clerici, Aurora, Coates, Andrew, Colleoni, Marta, Collodel, Lucas G, Compère, Geoffrey, Cook, William, Cordero-Carrión, Isabel, Correia, Miguel, de la Cruz-Dombriz, Álvaro, Czinner, Viktor G, Destounis, Kyriakos, Dialektopoulos, Kostas, Doneva, Daniela, Dotti, Massimo, Drew, Amelia, Eckner, Christopher, Edholm, James, Emparan, Roberto, Erdem, Recai, Ferreira, Miguel, Ferreira, Pedro G, Finch, Andrew, Font, Jose A, Franchini, Nicola, Fransen, Kwinten, Gal’tsov, Dmitry, Ganguly, Apratim, Gerosa, Davide, Glampedakis, Kostas, Gomboc, Andreja, Goobar, Ariel, Gualtieri, Leonardo, Guendelman, Eduardo, Haardt, Francesco, Harmark, Troels, Hejda, Filip, Hertog, Thomas, Hopper, Seth, Husa, Sascha, Ihanec, Nada, Ikeda, Taishi, Jaodand, Amruta, Jetzer, Philippe, Jimenez-Forteza, Xisco, Kamionkowski, Marc, Kaplan, David E, Kazantzidis, Stelios, Kimura, Masashi, Kobayashi, Shiho, Kokkotas, Kostas, Krolik, Julian, Kunz, Jutta, Lämmerzahl, Claus, Lasky, Paul, Lemos, José P S, Levi Said, Jackson, Liberati, Stefano, Lopes, Jorge, Luna, Raimon, Ma, Yin-Zhe, Maggio, Elisa, Mangiagli, Alberto, Montero, Marina Martinez, Maselli, Andrea, Mayer, Lucio, Mazumdar, Anupam, Messenger, Christopher, Ménard, Brice, Minamitsuji, Masato, Moore, Christopher J, Mota, David, Nampalliwar, Sourabh, Nerozzi, Andrea, Nichols, David, Nissimov, Emil, Obergaulinger, Martin, Obers, Niels A, Oliveri, Roberto, Pappas, George, Pasic, Vedad, Peiris, Hiranya, Petrushevska, Tanja, Pollney, Denis, Pratten, Geraint, Rakic, Nemanja, Racz, Istvan, Radia, Miren, Ramazanoğlu, Fethi M, Ramos-Buades, Antoni, Raposo, Guilherme, Rogatko, Marek, Rosca-Mead, Roxana, Rosinska, Dorota, Rosswog, Stephan, Ruiz-Morales, Ester, Sakellariadou, Mairi, Sanchis-Gual, Nicolás, Sharan Salafia, Om, Samajdar, Anuradha, Sintes, Alicia, Smole, Majda, Sopuerta, Carlos, Souza-Lima, Rafael, Stalevski, Marko, Stergioulas, Nikolaos, Stevens, Chris, Tamfal, Tomas, Torres-Forné, Alejandro, Tsygankov, Sergey, İ Ünlütürk, Kıvanç, Valiante, Rosa, van de Meent, Maarten, Velhinho, José, Verbin, Yosef, Vercnocke, Bert, Vernieri, Daniele, Vicente, Rodrigo, Vitagliano, Vincenzo, Weltman, Amanda, Whiting, Bernard, Williamson, Andrew, Witek, Helvi, Wojnar, Aneta, Yakut, Kadri, Yan, Haopeng, Yazadjiev, Stoycho, Zaharijas, Gabrijela, Zilhão, Miguel, Barack, L, Cardoso, V, Nissanke, S, Sotiriou, T, Askar, A, Belczynski, C, Bertone, G, Bon, E, Blas, D, Brito, R, Bulik, T, Burrage, C, Byrnes, C, Caprini, C, Chernyakova, M, Chruściel, P, Colpi, M, Ferrari, V, Gaggero, D, Gair, J, García-Bellido, J, Hassan, S, Heisenberg, L, Hendry, M, Heng, I, Herdeiro, C, Hinderer, T, Horesh, A, Kavanagh, B, Kocsis, B, Kramer, M, Le Tiec, A, Mingarelli, C, Nardini, G, Nelemans, G, Palenzuela, C, Pani, P, Perego, A, Porter, E, Rossi, E, Schmidt, P, Sesana, A, Sperhake, U, Stamerra, A, Stein, L, Tamanini, N, Tauris, T, Urena-López, L, Vincent, F, Volonteri, M, Wardell, B, Wex, N, Yagi, K, Abdelsalhin, T, Aloy, M, Amaro-Seoane, P, Annulli, L, Arca-Sedda, M, Bah, I, Barausse, E, Barakovic, E, Benkel, R, Bennett, C, Bernard, L, Bernuzzi, S, Berry, C, Berti, E, Bezares, M, Blanco-Pillado, J, Blázquez-Salcedo, J, Bonetti, M, Bošković, M, Bosnjak, Z, Bricman, K, Brügmann, B, Capelo, P, Carloni, S, Cerdá-Durán, P, Charmousis, C, Chaty, S, Clerici, A, Coates, A, Colleoni, M, Collodel, L, Compère, G, Cook, W, Cordero-Carrión, I, Correia, M, de la Cruz-Dombriz, Á, Czinner, V, Destounis, K, Dialektopoulos, K, Doneva, D, Dotti, M, Drew, A, Eckner, C, Edholm, J, Emparan, R, Erdem, R, Ferreira, M, Ferreira, P, Finch, A, Font, J, Franchini, N, Fransen, K, Gal’Tsov, D, Ganguly, A, Gerosa, D, Glampedakis, K, Gomboc, A, Goobar, A, Gualtieri, L, Guendelman, E, Haardt, F, Harmark, T, Hejda, F, Hertog, T, Hopper, S, Husa, S, Ihanec, N, Ikeda, T, Jaodand, A, Jetzer, P, Jimenez-Forteza, X, Kamionkowski, M, Kaplan, D, Kazantzidis, S, Kimura, M, Kobayashi, S, Kokkotas, K, Krolik, J, Kunz, J, Lämmerzahl, C, Lasky, P, Lemos, J, Levi Said, J, Liberati, S, Lopes, J, Luna, R, Ma, Y, Maggio, E, Mangiagli, A, Montero, M, Maselli, A, Mayer, L, Mazumdar, A, Messenger, C, Ménard, B, Minamitsuji, M, Moore, C, Mota, D, Nampalliwar, S, Nerozzi, A, Nichols, D, Nissimov, E, Obergaulinger, M, Obers, N, Oliveri, R, Pappas, G, Pasic, V, Peiris, H, Petrushevska, T, Pollney, D, Pratten, G, Rakic, N, Racz, I, Radia, M, Ramazanoğlu, F, Ramos-Buades, A, Raposo, G, Rogatko, M, Rosca-Mead, R, Rosinska, D, Rosswog, S, Ruiz-Morales, E, Sakellariadou, M, Sanchis-Gual, N, Sharan Salafia, O, Samajdar, A, Sintes, A, Smole, M, Sopuerta, C, Souza-Lima, R, Stalevski, M, Stergioulas, N, Stevens, C, Tamfal, T, Torres-Forné, A, Tsygankov, S, İ Ünlütürk, K, Valiante, R, van de Meent, M, Velhinho, J, Verbin, Y, Vercnocke, B, Vernieri, D, Vicente, R, Vitagliano, V, Weltman, A, Whiting, B, Williamson, A, Witek, H, Wojnar, A, Yakut, K, Yan, H, Yazadjiev, S, Zaharijas, G, Zilhão, M, Barack, Leor, Cardoso, Vitor, Nissanke, Samaya, Sotiriou, Thomas P, Askar, Abbas, Belczynski, Chris, Bertone, Gianfranco, Bon, Edi, Blas, Diego, Brito, Richard, Bulik, Tomasz, Burrage, Clare, Byrnes, Christian T, Caprini, Chiara, Chernyakova, Masha, Chruściel, Piotr, Colpi, Monica, Ferrari, Valeria, Gaggero, Daniele, Gair, Jonathan, García-Bellido, Juan, Hassan, S F, Heisenberg, Lavinia, Hendry, Martin, Heng, Ik Siong, Herdeiro, Carlos, Hinderer, Tanja, Horesh, Assaf, Kavanagh, Bradley J, Kocsis, Bence, Kramer, Michael, Le Tiec, Alexandre, Mingarelli, Chiara, Nardini, Germano, Nelemans, Gijs, Palenzuela, Carlos, Pani, Paolo, Perego, Albino, Porter, Edward K, Rossi, Elena M, Schmidt, Patricia, Sesana, Alberto, Sperhake, Ulrich, Stamerra, Antonio, Stein, Leo C, Tamanini, Nicola, Tauris, Thomas M, Urena-López, L Arturo, Vincent, Frederic, Volonteri, Marta, Wardell, Barry, Wex, Norbert, Yagi, Kent, Abdelsalhin, Tiziano, Aloy, Miguel Ángel, Amaro-Seoane, Pau, Annulli, Lorenzo, Arca-Sedda, Manuel, Bah, Ibrahima, Barausse, Enrico, Barakovic, Elvis, Benkel, Robert, Bennett, Charles L, Bernard, Laura, Bernuzzi, Sebastiano, Berry, Christopher P L, Berti, Emanuele, Bezares, Miguel, Blanco-Pillado, Jose Juan, Blázquez-Salcedo, Jose Luis, Bonetti, Matteo, Bošković, Mateja, Bosnjak, Zeljka, Bricman, Katja, Brügmann, Bernd, Capelo, Pedro R, Carloni, Sante, Cerdá-Durán, Pablo, Charmousis, Christos, Chaty, Sylvain, Clerici, Aurora, Coates, Andrew, Colleoni, Marta, Collodel, Lucas G, Compère, Geoffrey, Cook, William, Cordero-Carrión, Isabel, Correia, Miguel, de la Cruz-Dombriz, Álvaro, Czinner, Viktor G, Destounis, Kyriakos, Dialektopoulos, Kostas, Doneva, Daniela, Dotti, Massimo, Drew, Amelia, Eckner, Christopher, Edholm, James, Emparan, Roberto, Erdem, Recai, Ferreira, Miguel, Ferreira, Pedro G, Finch, Andrew, Font, Jose A, Franchini, Nicola, Fransen, Kwinten, Gal’tsov, Dmitry, Ganguly, Apratim, Gerosa, Davide, Glampedakis, Kostas, Gomboc, Andreja, Goobar, Ariel, Gualtieri, Leonardo, Guendelman, Eduardo, Haardt, Francesco, Harmark, Troels, Hejda, Filip, Hertog, Thomas, Hopper, Seth, Husa, Sascha, Ihanec, Nada, Ikeda, Taishi, Jaodand, Amruta, Jetzer, Philippe, Jimenez-Forteza, Xisco, Kamionkowski, Marc, Kaplan, David E, Kazantzidis, Stelios, Kimura, Masashi, Kobayashi, Shiho, Kokkotas, Kostas, Krolik, Julian, Kunz, Jutta, Lämmerzahl, Claus, Lasky, Paul, Lemos, José P S, Levi Said, Jackson, Liberati, Stefano, Lopes, Jorge, Luna, Raimon, Ma, Yin-Zhe, Maggio, Elisa, Mangiagli, Alberto, Montero, Marina Martinez, Maselli, Andrea, Mayer, Lucio, Mazumdar, Anupam, Messenger, Christopher, Ménard, Brice, Minamitsuji, Masato, Moore, Christopher J, Mota, David, Nampalliwar, Sourabh, Nerozzi, Andrea, Nichols, David, Nissimov, Emil, Obergaulinger, Martin, Obers, Niels A, Oliveri, Roberto, Pappas, George, Pasic, Vedad, Peiris, Hiranya, Petrushevska, Tanja, Pollney, Denis, Pratten, Geraint, Rakic, Nemanja, Racz, Istvan, Radia, Miren, Ramazanoğlu, Fethi M, Ramos-Buades, Antoni, Raposo, Guilherme, Rogatko, Marek, Rosca-Mead, Roxana, Rosinska, Dorota, Rosswog, Stephan, Ruiz-Morales, Ester, Sakellariadou, Mairi, Sanchis-Gual, Nicolás, Sharan Salafia, Om, Samajdar, Anuradha, Sintes, Alicia, Smole, Majda, Sopuerta, Carlos, Souza-Lima, Rafael, Stalevski, Marko, Stergioulas, Nikolaos, Stevens, Chris, Tamfal, Tomas, Torres-Forné, Alejandro, Tsygankov, Sergey, İ Ünlütürk, Kıvanç, Valiante, Rosa, van de Meent, Maarten, Velhinho, José, Verbin, Yosef, Vercnocke, Bert, Vernieri, Daniele, Vicente, Rodrigo, Vitagliano, Vincenzo, Weltman, Amanda, Whiting, Bernard, Williamson, Andrew, Witek, Helvi, Wojnar, Aneta, Yakut, Kadri, Yan, Haopeng, Yazadjiev, Stoycho, Zaharijas, Gabrijela, and Zilhão, Miguel
- Abstract
The grand challenges of contemporary fundamental physics-dark matter, dark energy, vacuum energy, inflation and early universe cosmology, singularities and the hierarchy problem-all involve gravity as a key component. And of all gravitational phenomena, black holes stand out in their elegant simplicity, while harbouring some of the most remarkable predictions of General Relativity: event horizons, singularities and ergoregions. The hitherto invisible landscape of the gravitational Universe is being unveiled before our eyes: the historical direct detection of gravitational waves by the LIGO-Virgo collaboration marks the dawn of a new era of scientific exploration. Gravitational-wave astronomy will allow us to test models of black hole formation, growth and evolution, as well as models of gravitational-wave generation and propagation. It will provide evidence for event horizons and ergoregions, test the theory of General Relativity itself, and may reveal the existence of new fundamental fields. The synthesis of these results has the potential to radically reshape our understanding of the cosmos and of the laws of Nature. The purpose of this work is to present a concise, yet comprehensive overview of the state of the art in the relevant fields of research, summarize important open problems, and lay out a roadmap for future progress. This write-up is an initiative taken within the framework of the European Action on 'Black holes, Gravitational waves and Fundamental Physics'.
- Published
- 2019
11. Black holes, gravitational waves and fundamental physics: a roadmap
- Author
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Ramazanoğlu, Fethi Mübin (ORCID 0000-0003-3075-1457 & YÖK ID 254225); Ünlütürk, Kıvanç İbrahim, Barack, Leor; Cardoso, Vitor; Nissanke, Samaya; Sotiriou, Thomas P.; Askar, Abbas; Belczynski, Chris; Bertone, Gianfranco; Bon, Edi; Blas, Diego; Brito, Richard; Bulik, Tomasz; Burrage, Clare; Byrnes, Christian T.; Caprini, Chiara; Chernyakova, Masha; Chrusciel, Piotr; Colpi, Monica; Ferrari, Valeria; Gaggero, Daniele; Gair, Jonathan; Garcia-Bellido, Juan; Hassan, S. F.; Heisenberg, Lavinia; Hendry, Martin; Heng, Ik Siong; Herdeiro, Carlos; Hinderer, Tanja; Horesh, Assaf; Kavanagh, Bradley J.; Kocsis, Bence; Kramer, Michael; Le Tiec, Alexandre; Mingarelli, Chiara; Nardini, Germano; Nelemans, Gijs; Palenzuela, Carlos; Pani, Paolo; Perego, Albino; Porter, Edward K.; Rossi, Elena M.; Schmidt, Patricia; Sesana, Alberto; Sperhake, Ulrich; Stamerra, Antonio; Stein, Leo C.; Tamanini, Nicola; Tauris, Thomas M.; Arturo Urena-Lopez, L.; Vincent, Frederic; Volonteri, Marta; Wardell, Barry; Wex, Norbert; Yagi, Kent; Abdelsalhin, Tiziano; Angel Aloy, Miguel; Amaro-Seoane, Pau; Annulli, Lorenzo; Arca-Sedda, Manuel; Bah, Ibrahima; Barausse, Enrico; Barakovic, Elvis; Benkel, Robert; Bennett, Charles L.; Bernard, Laura; Bernuzzi, Sebastiano; Berry, Christopher P. L.; Berti, Emanuele; Bezares, Miguel; Juan Blanco-Pillado, Jose; Blazquez-Salcedo, Jose Luis; Bonetti, Matteo; Boskovic, Mateja; Bosnjak, Zeljka; Bricman, Katja; Bruegmann, Bernd; Capelo, Pedro R.; Carloni, Sante; Cerda-Duran, Pablo; Charmousis, Christos; Chaty, Sylvain; Clerici, Aurora; Coates, Andrew; Colleoni, Marta; Collodel, Lucas G.; Compere, Geoffrey; Cook, William; Cordero-Carrion, Isabel; Correia, Miguel; de la Cruz-Dombriz, Alvaro; Czinner, Viktor G.; Destounis, Kyriakos; Dialektopoulos, Kostas; Doneva, Daniela; Dotti, Massimo; Drew, Amelia; Eckner, Christopher; Edholm, James; Emparan, Roberto; Erdem, Recai; Ferreira, Miguel; Ferreira, Pedro G.; Finch, Andrew; Font, Jose A.; Franchini, Nicola; Fransen, Kwinten; Gal'tsov, Dmitry; Ganguly, Apratim; Gerosa, Davide; Glampedakis, Kostas; Gomboc, Andreja; Goobar, Ariel, College of Sciences; Graduate School of Sciences and Engineering, Department of Physics, Ramazanoğlu, Fethi Mübin (ORCID 0000-0003-3075-1457 & YÖK ID 254225); Ünlütürk, Kıvanç İbrahim, Barack, Leor; Cardoso, Vitor; Nissanke, Samaya; Sotiriou, Thomas P.; Askar, Abbas; Belczynski, Chris; Bertone, Gianfranco; Bon, Edi; Blas, Diego; Brito, Richard; Bulik, Tomasz; Burrage, Clare; Byrnes, Christian T.; Caprini, Chiara; Chernyakova, Masha; Chrusciel, Piotr; Colpi, Monica; Ferrari, Valeria; Gaggero, Daniele; Gair, Jonathan; Garcia-Bellido, Juan; Hassan, S. F.; Heisenberg, Lavinia; Hendry, Martin; Heng, Ik Siong; Herdeiro, Carlos; Hinderer, Tanja; Horesh, Assaf; Kavanagh, Bradley J.; Kocsis, Bence; Kramer, Michael; Le Tiec, Alexandre; Mingarelli, Chiara; Nardini, Germano; Nelemans, Gijs; Palenzuela, Carlos; Pani, Paolo; Perego, Albino; Porter, Edward K.; Rossi, Elena M.; Schmidt, Patricia; Sesana, Alberto; Sperhake, Ulrich; Stamerra, Antonio; Stein, Leo C.; Tamanini, Nicola; Tauris, Thomas M.; Arturo Urena-Lopez, L.; Vincent, Frederic; Volonteri, Marta; Wardell, Barry; Wex, Norbert; Yagi, Kent; Abdelsalhin, Tiziano; Angel Aloy, Miguel; Amaro-Seoane, Pau; Annulli, Lorenzo; Arca-Sedda, Manuel; Bah, Ibrahima; Barausse, Enrico; Barakovic, Elvis; Benkel, Robert; Bennett, Charles L.; Bernard, Laura; Bernuzzi, Sebastiano; Berry, Christopher P. L.; Berti, Emanuele; Bezares, Miguel; Juan Blanco-Pillado, Jose; Blazquez-Salcedo, Jose Luis; Bonetti, Matteo; Boskovic, Mateja; Bosnjak, Zeljka; Bricman, Katja; Bruegmann, Bernd; Capelo, Pedro R.; Carloni, Sante; Cerda-Duran, Pablo; Charmousis, Christos; Chaty, Sylvain; Clerici, Aurora; Coates, Andrew; Colleoni, Marta; Collodel, Lucas G.; Compere, Geoffrey; Cook, William; Cordero-Carrion, Isabel; Correia, Miguel; de la Cruz-Dombriz, Alvaro; Czinner, Viktor G.; Destounis, Kyriakos; Dialektopoulos, Kostas; Doneva, Daniela; Dotti, Massimo; Drew, Amelia; Eckner, Christopher; Edholm, James; Emparan, Roberto; Erdem, Recai; Ferreira, Miguel; Ferreira, Pedro G.; Finch, Andrew; Font, Jose A.; Franchini, Nicola; Fransen, Kwinten; Gal'tsov, Dmitry; Ganguly, Apratim; Gerosa, Davide; Glampedakis, Kostas; Gomboc, Andreja; Goobar, Ariel, College of Sciences; Graduate School of Sciences and Engineering, and Department of Physics
- Abstract
The grand challenges of contemporary fundamental physics dark matter, dark energy, vacuum energy, inflation and early universe cosmology, singularities and the hierarchy problem all involve gravity as a key component. And of all gravitational phenomena, black holes stand out in their elegant simplicity, while harbouring some of the most remarkable predictions of General Relativity: event horizons, singularities and ergoregions.The hitherto invisible landscape of the gravitational Universe is being unveiled before our eyes: the historical direct detection of gravitational waves by the LIGO-Virgo collaboration marks the dawn of a new era of scientific exploration. Gravitational-wave astronomy will allow us to test models of black hole formation, growth and evolution, as well as models of gravitational-wave generation and propagation. It will provide evidence for event horizons and ergoregions, test the theory of General Relativity itself, and may reveal the existence of new fundamental fields. The synthesis of these results has the potential to radically reshape our understanding of the cosmos and of the laws of Nature.The purpose of this work is to present a concise, yet comprehensive overview of the state of the art in the relevant fields of research, summarize important open problems, and lay out a roadmap for future progress., European Union (EU); European Cooperation in Science and Technology (COST); Polish National Science Center (NCN); Carl Tryggers Foundation; Science & Technology Facilities Council (STFC); European Union's H2020 ERC Consolidator Grant 'Matter and strong-field gravity: New frontiers in Einstein's theory'; European Research Council (ERC); Horizon 2020; Science & Technology Facilities Council (STFC; Ministry of Education and Science of the Republic of Serbia; Foundation for Polish Science; Austrian Science Fund (FWF); Polish National Center of Science (NCN); European Research Council (ERC); Hungarian National Research, Development, and Innovation Office; Swiss National Science Foundation (SNSF); European Union's H2020 ERC; H2020-MSCA-RISE-2015 Grant; National Science Foundation (NSF); PRACE; Simons Foundation; Ministry of Economy, Industry and Competitiveness of Spain; Slovenian Research Agency - Slovenia; EU H2020 under ERC; Spanish MINECO; Generalitat Valenciana; NASA by the Chandra X-ray Center; National Aeronautics & Space Administration (NASA); Scientific and Technological Research Council of Turkey (TÜBİTAK); H2020-MSCA-RISE-2017 Grant; Scientific and Technological Research Council of Turkey (TÜBİTAK); National Science Centre of Poland - European Union; Deutscher Akademischer Austausch Dienst (DAAD); GWAVES of ARIS-GRNET(Athens); Royal Society of London; Research Grant; Scientific and Technological Research Council of Turkey (TÜBİTAK)
- Published
- 2019
12. SAGE: using CubeSats for gravitational wave detection
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Lacour, Sylvestre, primary, Kellerer, Aglae, primary, Woillez, Julien, primary, Nowak, Mathias, primary, Vincent, Frédéric, primary, David, Lester, primary, Lapeyrère, Vincent, primary, Le Tiec, Alexandre, primary, Straub, Odele, primary, and Bourget, Pierre, primary
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- 2018
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13. Horizon surface gravity in corotating black hole binaries
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Le Tiec, Alexandre, primary and Grandclément, Philippe, additional
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- 2018
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14. First law of compact binary mechanics with gravitational-wave tails
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Blanchet, Luc, primary and Le Tiec, Alexandre, additional
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- 2017
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15. Hamiltonian formulation of the conservative self-force dynamics in the Kerr geometry
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Fujita, Ryuichi, primary, Isoyama, Soichiro, additional, Le Tiec, Alexandre, additional, Nakano, Hiroyuki, additional, Sago, Norichika, additional, and Tanaka, Takahiro, additional
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- 2017
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16. Coalescing black hole binaries in general relativity & The dark matter problem in astrophysics
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Le Tiec, Alexandre, Institut d'Astrophysique de Paris (IAP), Centre National de la Recherche Scientifique (CNRS)-Institut national des sciences de l'Univers (INSU - CNRS)-Université Pierre et Marie Curie - Paris 6 (UPMC), Université Pierre et Marie Curie - Paris VI, Luc Blanchet(blanchet@iap.fr), Université Pierre et Marie Curie - Paris 6 (UPMC)-Institut national des sciences de l'Univers (INSU - CNRS)-Centre National de la Recherche Scientifique (CNRS), and Le Tiec, Alexandre
- Subjects
[PHYS.ASTR.HE]Physics [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE] ,[PHYS.GRQC] Physics [physics]/General Relativity and Quantum Cosmology [gr-qc] ,[SDU.ASTR.HE] Sciences of the Universe [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE] ,[SDU.ASTR]Sciences of the Universe [physics]/Astrophysics [astro-ph] ,trous noirs ,[SDU.ASTR.HE]Sciences of the Universe [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE] ,post-Newtonian ,[PHYS.MPHY]Physics [physics]/Mathematical Physics [math-ph] ,[PHYS.MPHY] Physics [physics]/Mathematical Physics [math-ph] ,[SDU.ASTR] Sciences of the Universe [physics]/Astrophysics [astro-ph] ,cosmologie ,black holes ,dark matter ,[PHYS.ASTR.CO]Physics [physics]/Astrophysics [astro-ph]/Cosmology and Extra-Galactic Astrophysics [astro-ph.CO] ,General Relativity and Quantum Cosmology ,matière noire ,gravitational waves ,[PHYS.ASTR.CO] Physics [physics]/Astrophysics [astro-ph]/Cosmology and Extra-Galactic Astrophysics [astro-ph.CO] ,ondes gravitationnelles ,general relativity ,[PHYS.GRQC]Physics [physics]/General Relativity and Quantum Cosmology [gr-qc] ,relativité générale ,post-newtonien ,cosmology ,[PHYS.ASTR.HE] Physics [physics]/Astrophysics [astro-ph]/High Energy Astrophysical Phenomena [astro-ph.HE] - Abstract
The first part of this PhD thesis is concerned with the modelling of the gravitational radiation emitted by coalescing binary black holes, to be detected by the ground and spaced-based gravitational-wave antennas LIGO/VIRGO and LISA. We study the relativistic dynamics of such compact binary systems using two approximation schemes in general relativity: the post-Newtonian formalism, and the self-force approach, a natural extension of black hole perturbation theory; we demonstrate the consistency of these results in their common domain of validity. We then combine these same two perturbative methods in order to estimate the gravitational recoil effect for coalescing binaries of Schwarzschild black holes; the results are shown to be in very good agreement with those obtained from simulations in numerical relativity. The second part of this thesis is devoted to the dark matter problem in astrophysics. The dark matter hypothesis successfully accounts for many independent observations from cosmological down to galaxy cluster scales. However, observations at the galactic scale are better reproduced by the modified Newtonian dynamics (MOND) proposal, which posits a modification of the fundamental laws of gravity in the absence of dark matter. We propose a third alternative: retaining the standard theory of gravitation, while endowing the dark matter particles with a property of polarizability in a gravitational field, in order to account for the phenomenology of MOND at the scale of galaxies., La première partie de cette thèse s'inscrit dans le cadre de la modélisation des ondes gravitationnelles en provenance des systèmes binaires coalescents de trous noirs, dans la perspective de leur détection par les antennes gravitationnelles terrestres LIGO/VIRGO et spatiale LISA. Nous étudions la dynamique relativiste de tels systèmes binaires d'objets compacts à l'aide de deux méthodes d'approximation en relativité générale : les développements post-newtoniens, et le formalisme de la force propre, une extension naturelle de la théorie des perturbations d'un trou noir ; nous démontrons la cohérence des résultats ainsi obtenus dans leur domaine de validité commun. Dans un second temps, nous combinons ces deux méthodes perturbatives afin d'estimer l'effet de recul gravitationnel lors de la coalescence de deux trous noirs de Schwarzschild ; nos résultats sont en très bon accord avec ceux obtenus par des simulations en relativité numérique. La seconde partie de cette thèse traite du problème de la matière noire en astrophysique. L'hypothèse de la matière noire rend compte de nombreuses observations indépendantes de l'échelle des amas de galaxies jusqu'aux échelles cosmologiques. Les observations à l'échelle galactique sont toutefois en bien meilleur accord avec la phénoménologie de la dynamique newtonienne modifiée (MOND), qui postule une modification des lois de la gravité en l'absence de matière noire. Nous proposons une troisième alternative : conserver la théorie de la gravitation standard, mais doter la matière noire d'une propriété de polarisabilité dans un champ gravitationnel, de façon à rendre compte de la phénoménologie de MOND à l'échelle des galaxies.
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- 2010
17. First law of mechanics for compact binaries on eccentric orbits
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Le Tiec, Alexandre, primary
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- 2015
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18. Comparison between self-force and post-Newtonian dynamics: Beyond circular orbits
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Akcay, Sarp, primary, Le Tiec, Alexandre, additional, Barack, Leor, additional, Sago, Norichika, additional, and Warburton, Niels, additional
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- 2015
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19. Gravitational Self-Force Correction to the Innermost Stable Circular Equatorial Orbit of a Kerr Black Hole
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Isoyama, Soichiro, primary, Barack, Leor, additional, Dolan, Sam R., additional, Le Tiec, Alexandre, additional, Nakano, Hiroyuki, additional, Shah, Abhay G., additional, Tanaka, Takahiro, additional, and Warburton, Niels, additional
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- 2014
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20. The overlap of numerical relativity, perturbation theory and post-Newtonian theory in the binary black hole problem
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Le Tiec, Alexandre, primary
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- 2014
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21. A note on celestial mechanics in Kerr spacetime
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Le Tiec, Alexandre, primary
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- 2014
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22. Gravitational self-torque and spin precession in compact binaries
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Dolan, Sam R., primary, Warburton, Niels, additional, Harte, Abraham I., additional, Le Tiec, Alexandre, additional, Wardell, Barry, additional, and Barack, Leor, additional
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- 2014
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23. Periastron advance in spinning black hole binaries: Gravitational self-force from numerical relativity
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Le Tiec, Alexandre, primary, Buonanno, Alessandra, additional, Mroué, Abdul H., additional, Pfeiffer, Harald P., additional, Hemberger, Daniel A., additional, Lovelace, Geoffrey, additional, Kidder, Lawrence E., additional, Scheel, Mark A., additional, Szilágyi, Bela, additional, Taylor, Nicholas W., additional, and Teukolsky, Saul A., additional
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- 2013
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24. Thermodynamics of a black hole with moon
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Gralla, Samuel E., primary and Le Tiec, Alexandre, additional
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- 2013
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25. First law of mechanics for black hole binaries with spins
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Blanchet, Luc, primary, Buonanno, Alessandra, additional, and Le Tiec, Alexandre, additional
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- 2013
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26. Spacetime symmetries and Kepler's third law
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Le Tiec, Alexandre, primary
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- 2012
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27. Gravitational Self-Force Correction to the Binding Energy of Compact Binary Systems
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Le Tiec, Alexandre, primary, Barausse, Enrico, additional, and Buonanno, Alessandra, additional
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- 2012
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28. First law of binary black hole mechanics in general relativity and post-Newtonian theory
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Le Tiec, Alexandre, primary, Blanchet, Luc, additional, and Whiting, Bernard F., additional
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- 2012
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29. Complete nonspinning effective-one-body metric at linear order in the mass ratio
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Barausse, Enrico, primary, Buonanno, Alessandra, additional, and Le Tiec, Alexandre, additional
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- 2012
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30. Periastron Advance in Black-Hole Binaries
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Le Tiec, Alexandre, primary, Mroué, Abdul H., additional, Barack, Leor, additional, Buonanno, Alessandra, additional, Pfeiffer, Harald P., additional, Sago, Norichika, additional, and Taracchini, Andrea, additional
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- 2011
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31. High-order post-Newtonian fit of the gravitational self-force for circular orbits in the Schwarzschild geometry
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Blanchet, Luc, primary, Detweiler, Steven, additional, Le Tiec, Alexandre, additional, and Whiting, Bernard F., additional
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- 2010
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32. Post-Newtonian and numerical calculations of the gravitational self-force for circular orbits in the Schwarzschild geometry
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Blanchet, Luc, primary, Detweiler, Steven, additional, Le Tiec, Alexandre, additional, and Whiting, Bernard F., additional
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- 2010
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33. The close-limit approximation for black hole binaries with post-Newtonian initial conditions
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Le Tiec, Alexandre, primary and Blanchet, Luc, additional
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- 2010
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34. The gravitational-wave recoil from the ringdown phase of coalescing black hole binaries
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Le Tiec, Alexandre, primary, Blanchet, Luc, additional, and Will, Clifford M, additional
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- 2009
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35. Dipolar dark matter and dark energy
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Blanchet, Luc, primary and Le Tiec, Alexandre, additional
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- 2009
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36. Model of dark matter and dark energy based on gravitational polarization
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Blanchet, Luc, primary and Le Tiec, Alexandre, additional
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- 2008
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37. Dipolar dark matter and dark energy
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Le Tiec, Alexandre [GReCO Institut d'Astrophysique de Paris-UMR 7095 du CNRS, Universite Pierre and Marie Curie, 98bis boulevard Arago, 75014 Paris (France)]
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- 2009
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38. Gravitational Self-Force Correction to the Innermost Stable Circular Equatorial Orbit of a Kerr Black Hole.
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Soichiro Isoyama, Barack, Leor, Dolan, Sam R., Le Tiec, Alexandre, Hiroyuki Nakano, Shah, Abhay G., Takahiro Tanaka, and Warburton, Niels
- Subjects
- *
GRAVITATION , *KERR black holes , *EQUATORIAL satellites , *NEWTON'S law of gravitation , *SPACETIME singularities (Relativity) - Abstract
For a self-gravitating particle of mass μ in orbit around a Kerr black hole of mass M ⪢ μ, we compute the O(μ/M) shift in the frequency of the innermost stable circular equatorial orbit due to the conservative piece of the gravitational self-force acting on the particle. Our treatment is based on a Hamiltonian formulation of the dynamics in terms of geodesic motion in a certain locally defined effective smooth spacetime. We recover the same result using the so-called first law of binary black-hole mechanics. We give numerical results for the innermost stable circular equatorial orbit frequency shift as a function of the black hole's spin amplitude and compare with predictions based on the post-Newtonian approximation and the effective one-body model Our results provide an accurate strong-field benchmark for spin effects in the general-relativistic two-body problem. [ABSTRACT FROM AUTHOR]
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- 2014
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39. Model of dark matter and dark energy based on gravitational polarization
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Le Tiec, Alexandre [GRECO, Institut d'Astrophysique de Paris-UMR 7095 du CNRS, Universite Pierre and Marie Curie, 98 bis boulevard Arago, 75014 Paris (France)]
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- 2008
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40. Black holes, gravitational waves and fundamental physics: a roadmap
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Ramazanoğlu, Fethi Mübin (ORCID 0000-0003-3075-1457 & YÖK ID 254225), Ünlütürk, Kıvanç İbrahim, Barack, Leor, Cardoso, Vitor, Nissanke, Samaya, Sotiriou, Thomas P., Askar, Abbas, Belczynski, Chris, Bertone, Gianfranco, Bon, Edi, Blas, Diego, Brito, Richard, Bulik, Tomasz, Burrage, Clare, Byrnes, Christian T., Caprini, Chiara, Chernyakova, Masha, Chrusciel, Piotr, Colpi, Monica, Ferrari, Valeria, Gaggero, Daniele, Gair, Jonathan, Garcia-Bellido, Juan, Hassan, S. F., Heisenberg, Lavinia, Hendry, Martin, Heng, Ik Siong, Herdeiro, Carlos, Hinderer, Tanja, Horesh, Assaf, Kavanagh, Bradley J., Kocsis, Bence, Kramer, Michael, Le Tiec, Alexandre, Mingarelli, Chiara, Nardini, Germano, Nelemans, Gijs, Palenzuela, Carlos, Pani, Paolo, Perego, Albino, Porter, Edward K., Rossi, Elena M., Schmidt, Patricia, Sesana, Alberto, Sperhake, Ulrich, Stamerra, Antonio, Stein, Leo C., Tamanini, Nicola, Tauris, Thomas M., Arturo Urena-Lopez, L., Vincent, Frederic, Volonteri, Marta, Wardell, Barry, Wex, Norbert, Yagi, Kent, Abdelsalhin, Tiziano, Angel Aloy, Miguel, Amaro-Seoane, Pau, Annulli, Lorenzo, Arca-Sedda, Manuel, Bah, Ibrahima, Barausse, Enrico, Barakovic, Elvis, Benkel, Robert, Bennett, Charles L., Bernard, Laura, Bernuzzi, Sebastiano, Berry, Christopher P. L., Berti, Emanuele, Bezares, Miguel, Juan Blanco-Pillado, Jose, Blazquez-Salcedo, Jose Luis, Bonetti, Matteo, Boskovic, Mateja, Bosnjak, Zeljka, Bricman, Katja, Bruegmann, Bernd, Capelo, Pedro R., Carloni, Sante, Cerda-Duran, Pablo, Charmousis, Christos, Chaty, Sylvain, Clerici, Aurora, Coates, Andrew, Colleoni, Marta, Collodel, Lucas G., Compere, Geoffrey, Cook, William, Cordero-Carrion, Isabel, Correia, Miguel, de la Cruz-Dombriz, Alvaro, Czinner, Viktor G., Destounis, Kyriakos, Dialektopoulos, Kostas, Doneva, Daniela, Dotti, Massimo, Drew, Amelia, Eckner, Christopher, Edholm, James, Emparan, Roberto, Erdem, Recai, Ferreira, Miguel, Ferreira, Pedro G., Finch, Andrew, Font, Jose A., Franchini, Nicola, Fransen, Kwinten, Gal'tsov, Dmitry, Ganguly, Apratim, Gerosa, Davide, Glampedakis, Kostas, Gomboc, Andreja, Goobar, Ariel, Gualtieri, Leonardo, Guendelman, Eduardo, Haardt, Francesco, Harmark, Troels, Hejda, Filip, Hertog, Thomas, Hopper, Seth, Husa, Sascha, Ihanec, Nada, Ikeda, Taishi, Jaodand, Amruta, Jetzer, Philippe, Jimenez-Forteza, Xisco, Kamionkowski, Marc, Kaplan, David E., Kazantzidis, Stelios, Kimura, Masashi, Kobayashi, Shiho, Kokkotas, Kostas, Krolik, Julian, Kunz, Jutta, Laemmerzahl, Claus, Lasky, Paul, Lemos, Jose P. S., Said, Jackson Levi, Liberati, Stefano, Lopes, Jorge, Luna, Raimon, Ma, Yin-Zhe, Maggio, Elisa, Mangiagli, Alberto, Montero, Marina Martinez, Maselli, Andrea, Mayer, Lucio, Mazumdar, Anupam, Messenger, Christopher, Menard, Brice, Minamitsuji, Masato, Moore, Christopher J., Mota, David, Nampalliwar, Sourabh, Nerozzi, Andrea, Nichols, David, Nissimov, Emil, Obergaulinger, Martin, Obers, Niels A., Oliveri, Roberto, Pappas, George, Pasic, Vedad, Peiris, Hiranya, Petrushevska, Tanja, Pollney, Denis, Pratten, Geraint, Rakic, Nemanja, Racz, Istvan, Radia, Miren, Ramazanoglu, Fethi M., Ramos-Buades, Antoni, Raposo, Guilherme, Rogatko, Marek, Rosca-Mead, Roxana, Rosinska, Dorota, Rosswog, Stephan, Ruiz-Morales, Ester, Sakellariadou, Mairi, Sanchis-Gual, Nicolas, Salafia, Om Sharan, Samajdar, Anuradha, Sintes, Alicia, Smole, Majda, Sopuerta, Carlos, Souza-Lima, Rafael, Stalevski, Marko, Stergioulas, Nikolaos, Stevens, Chris, Tamfal, Tomas, Torres-Forne, Alejandro, Tsygankov, Sergey, Valiante, Rosa, van de Meent, Maarten, Velhinho, Jose, Verbin, Yosef, Vercnocke, Bert, Vernieri, Daniele, Vicente, Rodrigo, Vitagliano, Vincenzo, Weltman, Amanda, Whiting, Bernard, Williamson, Andrew, Witek, Helvi, Wojnar, Aneta, Yakut, Kadri, Yan, Haopeng, Yazadjiev, Stoycho, Zaharijas, Gabrijela, Zilhao, Miguel, College of Sciences, Graduate School of Sciences and Engineering, and Department of Physics
- Subjects
General Relativity and Quantum Cosmology ,Astronomy and astrophysics ,Quantum science and technology ,Gravitational waves ,Gravitational-wave astronomy ,Source modelling ,Black holes ,Fundamental physics ,Birth and evolution of black holes ,Physics, multidisciplinary ,Physics, particles and fields - Abstract
The grand challenges of contemporary fundamental physics dark matter, dark energy, vacuum energy, inflation and early universe cosmology, singularities and the hierarchy problem all involve gravity as a key component. And of all gravitational phenomena, black holes stand out in their elegant simplicity, while harbouring some of the most remarkable predictions of General Relativity: event horizons, singularities and ergoregions.The hitherto invisible landscape of the gravitational Universe is being unveiled before our eyes: the historical direct detection of gravitational waves by the LIGO-Virgo collaboration marks the dawn of a new era of scientific exploration. Gravitational-wave astronomy will allow us to test models of black hole formation, growth and evolution, as well as models of gravitational-wave generation and propagation. It will provide evidence for event horizons and ergoregions, test the theory of General Relativity itself, and may reveal the existence of new fundamental fields. The synthesis of these results has the potential to radically reshape our understanding of the cosmos and of the laws of Nature.The purpose of this work is to present a concise, yet comprehensive overview of the state of the art in the relevant fields of research, summarize important open problems, and lay out a roadmap for future progress., European Union (EU); European Cooperation in Science and Technology (COST); Polish National Science Center (NCN); Carl Tryggers Foundation; Science & Technology Facilities Council (STFC); European Union's H2020 ERC Consolidator Grant 'Matter and strong-field gravity: New frontiers in Einstein's theory'; European Research Council (ERC); Horizon 2020; Science & Technology Facilities Council (STFC; Ministry of Education and Science of the Republic of Serbia; Foundation for Polish Science; Austrian Science Fund (FWF); Polish National Center of Science (NCN); European Research Council (ERC); Hungarian National Research, Development, and Innovation Office; Swiss National Science Foundation (SNSF); European Union's H2020 ERC; H2020-MSCA-RISE-2015 Grant; National Science Foundation (NSF); PRACE; Simons Foundation; Ministry of Economy, Industry and Competitiveness of Spain; Slovenian Research Agency - Slovenia; EU H2020 under ERC; Spanish MINECO; Generalitat Valenciana; NASA by the Chandra X-ray Center; National Aeronautics & Space Administration (NASA); Scientific and Technological Research Council of Turkey (TÜBİTAK); H2020-MSCA-RISE-2017 Grant; Scientific and Technological Research Council of Turkey (TÜBİTAK); National Science Centre of Poland - European Union; Deutscher Akademischer Austausch Dienst (DAAD); GWAVES of ARIS-GRNET(Athens); Royal Society of London; Research Grant; Scientific and Technological Research Council of Turkey (TÜBİTAK)
- Published
- 2019
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