15 results on '"V. A. Balkanov"'
Search Results
2. Registration of atmospheric neutrinos with the Baikal neutrino telescope
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Baikal Collaboration and al, V. A. Balkanov et
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Astrophysics - Abstract
We present first neutrino induced events observed with a deep underwater neutrino telescope. Data from 70 days effective life time of the BAIKAL prototype telescope NT-96 have been analyzed with two different methods. With the standard track reconstruction method, 9 clear upward muon candidates have been identified, in good agreement with 8.7 events expected from Monte Carlo calculations for atmospheric neutrinos. The second analysis is tailored to muons coming from close to the opposite zenith. It yields 4 events, compared to 3.5 from Monte Carlo expectations. From this we derive a 90 % upper flux limit of 1.1 * 10^-13 cm^-2 sec^-1 for muons in excess of those expected from atmospheric neutrinos with zenith angle > 150 degrees and energy > 10GeV., Comment: 20 pages, 11 figures
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- 1999
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3. Baikal neutrino project: history and prospects
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I. A. Portyanskaya, D. Yu. Bogorodskii, V.F. Kulepov, R. Vishnevskii, T. I. Gress, A. I. Panfilov, M.I. Rozanov, A. M. Klabukov, K. Shpiring, A. I. Klimov, E. Middell, L. V. Pankov, E. V. Ryabov, A. V. Shirokov, V. A. Zhukov, D. P. Petukhov, K.V. Golubkov, I. A. Belolaptikov, B. A. Tarashchanskii, O. N. Gaponenko, A.V. Avrorin, P. G. Pokhil, A.V. Korobchenko, Yu. A. Semenei, V. Yu. Rubtsov, A. A. Doroshenko, A. Pan'kov, Zh.-A.M. Dzhilkibaev, V. V. Prosin, S. I. Sinegovsky, V. M. Aynutdinov, V. Poleshchuk, N. M. Budnev, E. N. Pliskovskii, S. V. Fialkovskii, B. Shaibonov, Aleksey Zagorodnikov, R. R. Mirgazov, G. V. Domogatskii, I. A. Danilchenko, S. P. Mikheev, L. A. Kuzmichev, T. Mikolaiskii, K. V. Konishchev, A.P. Koshechkin, E. A. Osipova, M.B. Milenin, O. I. Grishin, O. A. Gress, A. P. D’yachok, V. A. Balkanov, and E.G. Popova
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Physics ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,Solar neutrino ,High Energy Physics::Phenomenology ,Astrophysics::Instrumentation and Methods for Astrophysics ,General Physics and Astronomy ,Astronomy ,Solar neutrino problem ,Cosmic neutrino background ,ddc:370 ,Neutrino detector ,Measurements of neutrino speed ,High Energy Physics::Experiment ,Neutrino astronomy ,Neutrino ,Neutrino oscillation - Abstract
The history, current status, and prospects for the development of the Baikal Neutrino Project are considered. The main physical results obtained with the help of NT200 and NT200+ neutrino telescopes are presented.
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- 2010
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4. Baikal neutrino telescope: Status, results, and prospects of development
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E. A. Osipova, O. N. Gaponenko, K. V. Konishchev, D. P. Petukhov, I. A. Belolaptikov, A. A. Doroshenko, Zh.-A.M. Dzhilkibaev, L. A. Kuzmichev, V. V. Prosin, V. A. Balkanov, E.G. Popova, T. Mikolaiskii, I. V. Yashin, V. Poleshchuk, A. I. Panfilov, K. Antipin, M.I. Rozanov, V. Yu. Rubtsov, E. N. Pliskovskii, D. A. Borshchev, O. A. Gress, A. M. Klabukov, S. V. Fialkovskii, S. P. Mikheev, A. P. D’yachok, M.B. Milenin, V.F. Kulepov, N. M. Budnev, B. Shaibonov, R. Vishnevskii, G. Pan'kov, O. I. Grishin, A. Kochanov, R. R. Mirgazov, A.P. Koshechkin, Yu. A. Semenei, T. I. Gress, G. V. Domogatskii, E. Middel, I. A. Danilchenko, A. V. Shirokov, P. G. Pokhil, A.A. Sheifler, V. M. Ainutdinov, K. Spiring, K.V. Golubkov, R. V. Vasil’ev, V. A. Zhukov, L. V. Pankov, B. A. Tarashchanskii, and A. I. Klimov
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Physics ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,Solar neutrino ,General Physics and Astronomy ,Astrophysics ,Solar neutrino problem ,Neutrino detector ,Weakly interacting massive particles ,Measurements of neutrino speed ,High Energy Physics::Experiment ,Neutrino ,Neutrino astronomy ,Neutrino oscillation - Abstract
The main physical results obtained with the Baikal neutrino telescope NT200 during the period 1998–2003 are reviewed: the limits for the diffuse flux of high-energy neutrinos, high-energy muons, and magnetic monopoles and the results of search for neutrinos from the center of the Earth due to annihilation of weakly interacting massive particles and from local neutrino sources. In April, 2005, the neutrino telescope NT200 was extended by introduction of three new strings, located at a distance of 100 m from the NT200 center. The new deep-water complex NT200+ has an effective volume for detecting cascades from high-energy neutrinos larger than that of NT200 by a factor of 4. At a cascade energy of 10 PeV, the effective volume of the new complex is 107 m3. Further development of the Baikal neutrino experiment is related to the design and fabrication of a detector with a volume of about 1 km3.
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- 2007
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5. The Baikal Neutrino Telescope
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Yu. V. Parfenov, T. I. Gress, I. V. Yashin, R. V. Vasiliev, V. Yu. Rubtzov, L. Pankov, A. V. Shirokov, L. B. Bezrukov, A. I. Panfilov, P. G. Pokhil, G. I. Pan’kov, S. V. Fialkovsky, A. I. Klimov, B. A. Tarashansky, R. R. Mirgazov, A. A. Doroshenko, Zh.-A.M. Dzhilkibaev, E. N. Pliskovsky, V. V. Prosin, M. I. Rosanov, A. A. Pavlov, B. A. M. Shaibonov, Ralf Wischnewski, L. A. Kuzmichev, S. Mikheyev, Bayarto Lubsandorzhiev, V. M. Aynutdinov, G.V. Domogatsky, I. A. Danilchenko, T. Mikolajski, I. A. Belolaptikov, E. A. Osipova, Vy. Kuznetzov, O. A. Gress, K. V. Konischev, V. A. Balkanov, E.G. Popova, D. Borschev, O. N. Gaponenko, Ch. Spiering, O. Grishin, A. M. Klabukov, M.B. Milenin, A. N. Dyachok, V. A. Zhukov, A.P. Koshechkin, Ya. Davidov, N. M. Budnev, V. Polecshuk, A. V. Kochanov, K.V. Golubkov, K. V. Burmistrov, D. P. Petukhov, and V. F. Kulepov
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Physics ,Nuclear and High Energy Physics ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,Detector ,Astronomy ,Flux ,Fermion ,Atomic and Molecular Physics, and Optics ,Particle detector ,Massless particle ,Neutrino detector ,ddc:530 ,High Energy Physics::Experiment ,Neutrino ,Lepton - Abstract
We review the present status of the Baikal Neutrino Experiment and present results of a search for upward-going atmospheric neutrinos and magnetic monopoles obtained with the detector NT200. The results of a search for very high energy neutrinos are presented and an upper limit on the extraterrestrial diffuse neutrino flux is obtained. We describe the strategy of upgrading the NT200 to NT200+ and creating a detector on the Gigaton scale at Lake Baikal. The first results obtained with the new NT200+ detector as a basic cell of a future Gigaton detector are presented.
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- 2006
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6. Hydroacoustic coordinate-measuring system of the NT-200 Baikal neutrino telescope
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O. A. Gress, S. I. Polityko, V.F. Kulepov, A. A. Doroshenko, Zh.-A.M. Dzhilkibaev, V. V. Prosin, A. N. Dyachok, S. A. Nikiforov, M.B. Milenin, N. I. Moseiko, Dmitry Chernov, A. I. Panfilov, Ch. Spiering, A. V. Rzhetsichkii, I. A. Danilchenko, V. A. Balkanov, E.G. Popova, Yu. V. Parfenov, I. A. Belolaptikov, G. V. Domogatskii, E. Vyatchin, B. A. M. Shaibonov, Bayarto Lubsandorzhiev, M.I. Rozanov, A. G. Chenskii, A. A. Pavlov, V. Poleshchuk, E. A. Osipova, S. V. Lovtsov, A.P. Koshechkin, T. Mikolajski, Yu. A. Semenei, V. A. Primin, N. M. Budnev, L. V. Pankov, B. A. Tarashchanskii, A. I. Klimov, K. V. Konishchev, A. M. Klabukov, Alexander Moroz, L. B. Bezrukov, V. E. Kuznetsov, L. A. Kuzmichev, R. Wischnewski, E. N. Pliskovskii, O. N. Gaponenko, Yu. B. Lanin, S. V. Fialkovskii, S. P. Mikheev, V. M. Ainutdinov, E. O. Kozakov, V. A. Zhukov, I. V. Yashin, P. G. Pokhil, Valery Zurbanov, V. Yu. Rubtsov, T. I. Gress, R. V. Vasil’ev, S. I. Klimushin, G. Pan'kov, and R. R. Mirgazov
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Physics ,Observational error ,Acoustics and Ultrasonics ,Neutrino telescope ,Mode (statistics) ,Astronomy ,Ranging ,Remote sensing - Abstract
The hydroacoustic coordinate-measuring system of the NT-200 Baikal neutrino telescope is described. It is a ranging long-base hydroacoustic system constantly operating in an automated or interactive mode and capable of measuring the coordinates of the detecting modules of the NT-200 to within 20 cm. Special attention is given to the justification of the estimate of the coordinate measurement errors. As an illustration, some results of measuring the coordinates of the elements of the NT-200 and the hydrophysical characteristics of lake Baikal are presented.
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- 2005
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7. The Lake Baikal neutrino experiment
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V. A. Poleshuk, E. N. Pliskovsky, T. I. Gress, R. Il'yasov, L. A. Kuzmichev, O. N. Gaponenko, V. A. Zhukov, A. A. Pavlov, P. G. Pokhil, R. V. Vasiliev, V.Yu. Rubzov, A. I. Klimov, N. I. Moseiko, I. V. Yashin, O. A. Gress, A. I. Panfilov, O. Streicher, R. R. Mirgazov, Yu. V. Parfenov, S. I. Klimushin, Ch. Spiering, L. Pankov, Zh.-A.M. Dzhilkibaev, I. A. Belolaptikov, A.P. Koshechkin, V. V. Prosin, A. M. Klabukov, B.K. Lubsandorzhiev, I. A. Danilchenko, M. I. Rosanov, R. Wischnewski, K. V. Konischev, V. A. Balkanov, S. P. Micheev, E. A. Osipova, E.G. Popova, M.B. Milenin, A. G. Chensky, Vy. E. Kuznetsov, G.V. Domogatsky, L. B. Bezrukov, N. M. Budnev, V. F. Kulepov, B. A. Tarashansky, S. V. Fialkovsky, and Yu. A. Semenei
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Physics ,Nuclear and High Energy Physics ,Particle physics ,Muon ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,Solar neutrino ,High Energy Physics::Phenomenology ,Astrophysics::Instrumentation and Methods for Astrophysics ,Solar neutrino problem ,Atomic and Molecular Physics, and Optics ,Neutrino detector ,WIMP ,High Energy Physics::Experiment ,Neutrino ,Neutrino astronomy ,Lepton - Abstract
We review the present status of the Baikal neutrino experiment. The structure and parameters of the neutrino telescope NT-200, which was put into operation in April 1998, are described. Selected methodological results are presented. Physics results cover separating up-going muons from atmospheric neutrinos, searches for neutrino events from WIMP annihilation, searches for magnetic monopoles, and high-energy neutrinos.
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- 2003
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8. [Untitled]
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P. G. Pokhil, Bayarto Lubsandorzhiev, V. A. Balkanov, R. V. Vasiliev, S. A. Belyanchenko, and V. A. Smolitskii
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Physics ,Photomultiplier ,Physics::Instrumentation and Detectors ,business.industry ,Charge density ,Photodetector ,Time resolution ,Phototube ,Optics ,Amplitude ,Time response ,business ,Instrumentation ,Communication channel - Abstract
A two-channel photomultiplier tube is developed to use as part of a QUASAR-370 hybrid photodetector. The test results of the amplitude and time responses are described. The time resolution is ≤340 ps; the peak-to-valley ratio of the charge distribution of single photoelectron pulses is ∼1.5.
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- 2002
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9. [Untitled]
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Bayarto Lubsandorzhiev, G. Toht, V. A. Balkanov, S. A. Belyanchenko, Gali Garipov, V. A. Smolitskii, Z. Posfai, R. V. Vasiliev, B. A. Khrenov, and P. G. Pokhil
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Physics ,Photomultiplier ,Full width at half maximum ,Single electron ,Optics ,business.industry ,Resolution (electron density) ,Transit time ,business ,Instrumentation ,Photocathode - Abstract
Single-electron and time characteristics of a ФЭУ-184U photomultiplier tube with a uviol window are presented. The ФЭУ-184U single-electron resolution can reach a value of ∼63–64%, and, in case of single-electron light-striking of the photocathode, the photoelectron transit time distribution (full width at half maximum) is ∼6 ns.
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- 2001
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10. Status of the Baikal neutrino project
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P. G. Pokhil, O. G. Grishin, K.V. Golubkov, I. A. Belolaptikov, A. Kochanov, R. R. Mirgazov, A. A. Doroshenko, V.F. Kulepov, I. A. Danilchenko, A.V. Avrorin, Zh.-A.M. Dzhilkibaev, V. V. Prosin, V. M. Aynutdinov, R. Wischnewski, B. A. Shaibonov, A. I. Klimov, G. Pan'kov, B.A. Tarashansky, D.A. Kuleshov, O. N. Gaponenko, T. I. Gress, E. A. Osipova, V. Yu. Rubtsov, I. V. Yashin, G.V. Domogatsky, E. Middell, L. A. Kuzmichev, S. Mikheyev, A.A. Sheifler, K. V. Konishchev, A.P. Koshechkin, M.B. Milenin, D. Bogorodsky, D. A. Petukhov, V. A. Balkanov, E.G. Popova, V. A. Poleshuk, O. A. Gress, N. M. Budnev, S.V. Fialkovsky, A. I. Panfilov, V. A. Zhukov, E.N. Pliskovsky, M.I. Rozanov, A. M. Klabukov, A. N. Dyachok, Ch. Spiering, Olga Suvorova, and L. V. Pankov
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Physics ,Nuclear physics ,Particle physics ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,High Energy Physics::Phenomenology ,Hadron ,Astrophysics::Instrumentation and Methods for Astrophysics ,General Physics and Astronomy ,Flux ,High Energy Physics::Experiment ,Neutrino ,Charged current - Abstract
The status of the Baikal neutrino experiment is briefly reviewed and the results of the search for the natural flux of high-energy neutrinos are reported.
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- 2009
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11. The BAIKAL Neutrino Telescope: From NT200 to NT200+
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P. G. Pokhil, R. Vasiliev, A. I. Panfilov, K.V. Golubkov, O. N. Gaponenko, A. N. Dyachok, B.A. Tarashansky, A. I. Klimov, I. A. Danilchenko, K.V. Konischev, Yu. V. Parfenov, Ch. Spiering, G. Pan'kov, L. B. Bezrukov, N. M. Budnev, K. V. Burmistrov, D. P. Petukhov, A. A. Doroshenko, V.F. Kulepov, M. I. Rosanov, V. M. Aynutdinov, R. Wischnewski, I. I. Yashin, Zh.-A.M. Dzhilkibaev, V. V. Prosin, A.P. Koshechkin, S.V. Fialkovsky, M.B. Milenin, V. A. Zhukov, T. I. Gress, I. A. Belolaptikov, E.N. Pliskovsky, A. M. Klabukov, T. Mikolajski, O. A. Gress, A. V. Shirokov, V. A. Balkanov, E.G. Popova, Vy. Kuznetzov, L. V. Pankov, O. G. Grishin, V. A. Poleschuk, A. Kochanov, R. R. Mirgazov, B. A. M. Shaibonov, Bayarto Lubsandorzhiev, G.V. Domogatsky, D. Borschev, L. A. Kuzmichev, S. Mikheyev, V. Rubtzov, Ya. Davidov, E. A. Osipova, and A. A. Pavlov
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Physics ,Physics::Instrumentation and Detectors ,Solar neutrino ,Astrophysics::High Energy Astrophysical Phenomena ,Detector ,Neutrino telescope ,General Physics and Astronomy ,Astronomy ,Astrophysics ,Solar neutrino problem ,Neutrino detector ,Measurements of neutrino speed ,High Energy Physics::Experiment ,ddc:530 ,Neutrino ,Neutrino astronomy - Abstract
We review the status of the Baikal Neutrino Telescope, which has recently been upgraded to the 5 Mton detector NT200+. We present results on searches for upward going atmospheric neutrinos and relativistic magnetic monopoles, obtained from 1998-2002 with the predecessor detector NT200. A search for very high energy neutrinos yields an upper limit on the extraterrestrial diffuse neutrino flux for 20 TeV < E < 50 PeV. We describe the strategy of upgrading NT200 to NT200+ and creating a detector on the Gigaton (km3) scale at lake Baikal. R&D activities on that next stage detector have been started.
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- 2006
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12. High-frequency acoustic noise of Lake Baikal
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T. I. Gress, E. N. Pliskovskiĭ, Ole Streicher, V. Yu. Rubtsov, V. A. Zhukov, S. I. Klimushin, O. N. Gaponenko, A. G. Chenskiĭ, N. M. Budnev, G. Pan'kov, B. A. Tarashchanskiĭ, O. A. Gress, S. V. Fialkovskiĭ, G. V. Domogatskiĭ, L. A. Kuzmichev, E. A. Osipova, S. P. Mikheev, Bayarto Lubsandorzhiev, A.P. Koshechkin, R. V. Vasil’ev, I. A. Belolaptikov, T. Mikolajskiĭ, V. A. Balkanov, A. N. Dyachok, A. I. Panfilov, E.G. Popova, V. M. Aĭnutdinov, M.B. Milenin, R. Wischnewski, M.I. Rozanov, Ch. Spiering, I. V. Yashin, R. Yu. Gnatovskiĭ, A. M. Klabukov, O. G. Grishin, A. Kochanov, R. R. Mirgazov, L. B. Bezrukov, A. I. Klimov, V. Poleshchuk, B. A. Shaĭbonov, L. V. Pankov, A. A. Doroshenko, Zh.-A.M. Dzhilkibaev, V. V. Prosin, K. V. Konishchev, A. A. Pavlov, I. A. Danilchenko, P. G. Pokhil, and V.F. Kulepov
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Physics ,Noise ,Noise power ,Optics ,Amplitude ,Acoustics and Ultrasonics ,business.industry ,Frequency band ,Acoustics ,ddc:530 ,Neutrino ,business - Abstract
High-frequency noise of Lake Baikal is investigated using a submersible self-contained instrument to determine the noise background for the acoustic detection of superhigh-energy neutrinos. It is found that, under stationary and uniform meteorological conditions, the integral noise power in the frequency band 1–50 kHz is virtually independent of depth and is 10–200 mPa or more, depending on the specific conditions. The noise itself contains multiple short pulses of different amplitudes and shapes.
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- 2006
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13. Status of the BAIKAL neutrino experiment
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V.F. Kulepov, A. A. Perevalov, R. Wischnewski, O. G. Grishin, A. S. Yagunov, D. A. Petukhov, O. N. Gaponenko, R. R. Mirgazov, D.Yu. Bogorodsky, A. I. Klimov, E. Middell, O. A. Gress, B. Shoibonov, Evgenii V Rjabov, B. A. Tarashchansky, A. V. Zagorodnikov, A. A. Doroshenko, E. A. Osipova, Zh.-A.M. Dzhilkibaev, V. V. Prosin, I. A. Danilchenko, V. A. Balkanov, M.B. Milenin, E.N. Pliskovsky, A. M. Klabukov, A.V. Avrorin, K.V. Golubkov, Ch. Spering, I. A. Belolaptikov, G. Ermakov, A. N. Dyachok, S.V. Fialkovsky, V. Rubzov, A. I. Panfilov, V. A. Zhukov, M.I. Rozanov, A.P. Koshechkin, V.I. Ljashuk, A.V. Korobchenko, A. Pan'kov, T. I. Gress, A. A. Sheifler, V. Poleshchuk, E.G. Popova, G.V. Domogatsky, V. M. Aynutdinov, N. Grishin, A. V. Shirokov, Olga Suvorova, S. F. Berezhnev, L. V. Pankov, N. M. Budnev, L. A. Kuzmichev, K. V. Konishchev, D.A. Kuleshov, and S. P. Mikheev
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Physics ,Neutrino telescope ,General Physics and Astronomy ,Astronomy ,Astrophysics ,Neutrino - Abstract
The development of the NT1000 km3 neutrino telescope at Lake Baikal has been the main goal of the BAIKAL collaboration since 2006. This work presents selected results obtained in the course of developing and testing key elements and systems of the future detector.
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- 2011
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14. The BAIKAL Neutrino Project: Status Report
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V. A. Balkanov, I. A. Belolaptikov, L. B. Bezrukov, N. M. Budnev, A. G. Chensky, I. A. Danilchenko, Zh.-A. M. Dzhilkibaev, G. V. Domogatsky, A. A. Doroshenko, S. V. Fialkovsky, O. N. Gaponenko, O. A. Gress, D. D. Kiss, A. M. Klabukov, A. I. Klimov, S. I. Klimushin, A. P. Koshechkin, V. F. Kulepov, L. A. Kuzmichev, Vy. E. Kuznetzov, J. Ljaudenskaite, B. K. Lubsandorzhiev, M. B. Milenin, R. R. Mirgazov, N. I. Moseiko, V. A. Netikov, E. A. Osipova, A. I. Panfilov, Yu. V. Parfenov, L. V. Pan’kov, A. A. Pavlov, E. N. Pliskovsky, P. G. Pokhil, V. A. Poleshuk, E. G. Popova, V. V. Prosin, M. I. Rozanov, V. Yu. Rubzov, Yu. A. Semenei, I. A. Sokalski, C. H. Spiering, O. Streicher, B. A. Tarashansky, T. Thon, G. Toht, R. V. Vasiljev, R. Wischnewski, I. V. Yashin, and V. A. Zhukov
- Published
- 2001
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15. The Lake Baikal neutrino experiment: selected results
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V. A. Balkanov, I. A. Belolaptikov, L. B. Bezrukov, N. M. Budnev, A. G. Chensky, I. A. Danilchenko, Zh. -A. M. Dzhilkibaev, G. V. Domogatsky, A. A. Doroshenko, S. V. Fialkovsky, O. N. Gaponenko, A. A. Garus, T. I. Gress, D. Kiss, A. I. Klimov, S. I. Klimushin, A. P. Koshechkin, V. E. Kuznetzov, V. F. Kulepov, L. A. Kuzmichev, S. V. Lovzov, J. J. Laudenskaite, B. K. Lubsandorzhiev, M. B. Milenin, R. R. Mirgazov, N. I. Moseiko, V. A. Netikov, E. A. Osipova, A. I. Panfilov, Yu. V. Parfenov, A. A. Pavlov, E. N. Pliskovsky, P. G. Pokhil, E. G. Popova, M. I. Rozanov, I. A. Sokalski, Ch. Spiering, O. Streicher, B. A. Tarashansky, G. Toht, T. Thon, R. Vasiliev, R. Wischnewski, and I. V. Yashin
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Physics ,Nuclear and High Energy Physics ,High energy ,Muon ,Annihilation ,Physics::Instrumentation and Detectors ,Astrophysics::High Energy Astrophysical Phenomena ,Astrophysics (astro-ph) ,Astrophysics::Instrumentation and Methods for Astrophysics ,FOS: Physical sciences ,Astrophysics ,Atomic and Molecular Physics, and Optics ,Nuclear physics ,WIMP ,Angular resolution ,High Energy Physics::Experiment ,Neutrino ,Cherenkov radiation - Abstract
We review the present status of the lake Baikal Neutrino Experiment and present selected physical results gained with the consequetive stages of the stepwise increasing detector: from NT-36 to NT-96. Results cover atmospheric muons, neutrino events, very high energy neutrinos, search for neutrino events from WIMP annihilation, search for magnetic monopoles and environmental studies. We also describe an air Cherenkov array developed for the study of angular resolution of NT-200., Comment: 25 pages, 12 figures. To appear in the Procrrdings of International Conference on Non-Accelerator New Physics, June 28 - July 3, 1999, Dubna, Russia
- Published
- 2000
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