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Direct Optimal Mapping Image Power Spectrum and its Window Functions

Authors :
Xu, Zhilei
Kim, Honggeun
Hewitt, Jacqueline N.
Chen, Kai-Feng
Kern, Nicholas S.
Rath, Elizabeth
Byrne, Ruby
Gorce, Adélie
Martinot, Zachary E.
Dillon, Joshua S.
Hazelton, Bryna J.
Liu, Adrian
Morales, Miguel F.
Abdurashidova, Zara
Adams, Tyrone
Aguirre, James E.
Alexander, Paul
Ali, Zaki S.
Baartman, Rushelle
Balfour, Yanga
Beardsley, Adam P.
Bernardi, Gianni
Billings, Tashalee S.
Bowman, Judd D.
Bradley, Richard F.
Bull, Philip
Burba, Jacob
Carey, Steven
Carilli, Chris L.
Cheng, Carina
DeBoer, David R.
Acedo, Eloy de Lera
Dexter, Matt
Eksteen, Nico
Ely, John
Ewall-Wice, Aaron
Fagnoni, Nicolas
Fritz, Randall
Furlanetto, Steven R.
Gale-Sides, Kingsley
Glendenning, Brian
Gorthi, Deepthi
Greig, Bradley
Grobbelaar, Jasper
Halday, Ziyaad
Hickish, Jack
Jacobs, Daniel C.
Julius, Austin
Kariseb, MacCalvin
Kerrigan, Joshua
Kittiwisit, Piyanat
Kohn, Saul A.
Kolopanis, Matthew
Lanman, Adam
La Plante, Paul
Loots, Anita
MacMahon, David Harold Edward
Malan, Lourence
Malgas, Cresshim
Malgas, Keith
Marero, Bradley
Mesinger, Andrei
Molewa, Mathakane
Mosiane, Tshegofalang
Murray, Steven G.
Neben, Abraham R.
Nikolic, Bojan
Nuwegeld, Hans
Parsons, Aaron R.
Patra, Nipanjana
Pieterse, Samantha
Razavi-Ghods, Nima
Robnett, James
Rosie, Kathryn
Sims, Peter
Smith, Craig
Swarts, Hilton
Thyagarajan, Nithyanandan
van Wyngaarden, Pieter
Williams, Peter K. G.
Zheng, Haoxuan
Xu, Zhilei
Kim, Honggeun
Hewitt, Jacqueline N.
Chen, Kai-Feng
Kern, Nicholas S.
Rath, Elizabeth
Byrne, Ruby
Gorce, Adélie
Martinot, Zachary E.
Dillon, Joshua S.
Hazelton, Bryna J.
Liu, Adrian
Morales, Miguel F.
Abdurashidova, Zara
Adams, Tyrone
Aguirre, James E.
Alexander, Paul
Ali, Zaki S.
Baartman, Rushelle
Balfour, Yanga
Beardsley, Adam P.
Bernardi, Gianni
Billings, Tashalee S.
Bowman, Judd D.
Bradley, Richard F.
Bull, Philip
Burba, Jacob
Carey, Steven
Carilli, Chris L.
Cheng, Carina
DeBoer, David R.
Acedo, Eloy de Lera
Dexter, Matt
Eksteen, Nico
Ely, John
Ewall-Wice, Aaron
Fagnoni, Nicolas
Fritz, Randall
Furlanetto, Steven R.
Gale-Sides, Kingsley
Glendenning, Brian
Gorthi, Deepthi
Greig, Bradley
Grobbelaar, Jasper
Halday, Ziyaad
Hickish, Jack
Jacobs, Daniel C.
Julius, Austin
Kariseb, MacCalvin
Kerrigan, Joshua
Kittiwisit, Piyanat
Kohn, Saul A.
Kolopanis, Matthew
Lanman, Adam
La Plante, Paul
Loots, Anita
MacMahon, David Harold Edward
Malan, Lourence
Malgas, Cresshim
Malgas, Keith
Marero, Bradley
Mesinger, Andrei
Molewa, Mathakane
Mosiane, Tshegofalang
Murray, Steven G.
Neben, Abraham R.
Nikolic, Bojan
Nuwegeld, Hans
Parsons, Aaron R.
Patra, Nipanjana
Pieterse, Samantha
Razavi-Ghods, Nima
Robnett, James
Rosie, Kathryn
Sims, Peter
Smith, Craig
Swarts, Hilton
Thyagarajan, Nithyanandan
van Wyngaarden, Pieter
Williams, Peter K. G.
Zheng, Haoxuan
Publication Year :
2023

Abstract

The key to detecting neutral hydrogen during the epoch of reionization (EoR) is to separate the cosmological signal from the dominating foreground radiation. We developed direct optimal mapping (Xu et al. 2022) to map interferometric visibilities; it contains only linear operations, with full knowledge of point spread functions from visibilities to images. Here we present an FFT-based image power spectrum and its window functions based on direct optimal mapping. We use noiseless simulation, based on the Hydrogen Epoch of Reionization Array (HERA) Phase I configuration, to study the image power spectrum properties. The window functions show $<10^{-11}$ power leakage from the foreground-dominated region into the EoR window; the 2D and 1D power spectra also verify the separation between the foregrounds and the EoR. Furthermore, we simulated visibilities from a $uv$-complete array and calculated its image power spectrum. The result shows that the foreground--EoR leakage is further suppressed below $10^{-12}$, dominated by the tapering function sidelobes; the 2D power spectrum does not show signs of the horizon wedge. The $uv$-complete result provides a reference case for future 21cm cosmology array designs.<br />Comment: Submitted to ApJ

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1430702373
Document Type :
Electronic Resource