(Baksan Experiment on Sterile Transitions)

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1 - Neutrino Oscillations

A Search for Electron Neutrino Transitions to Sterile States in the BEST Experiment, V.V. Barinov et al. (BEST), Phys.Rev.C 105 (2022) 065502, arXiv:2201.07364.
Results from the Baksan Experiment on Sterile Transitions (BEST), V.V. Barinov et al. (BEST), Phys.Rev.Lett. 128 (2022) 232501, arXiv:2109.11482.

2 - Articles

Production of the artificial 51Cr neutrino source in the BEST project, S. N. Danshin et al., JINST 17 (2022) P08029, arXiv:2207.10928.
Measurement of neutrino source activity in the experiment BEST by calorimetric method, V.N. Gavrin, T.V. Ibragimova, J.P. Kozlova, V.A. Tarasov, E.P. Veretenkin, A.I. Zvir, JINST 16 (2021) P04012, arXiv:2105.05120.
BEST potential in testing eV-scale sterile neutrino explanation of reactor antineutrino anomalies, Vladislav Barinov, Vladimir Gavrin, Valery Gorbachev, Dmitry Gorbunov, Tatiana Ibragimova, Phys.Rev. D99 (2019) 111702, arXiv:1905.07437.
On the gallium experiment BEST-2 with a $^{65}$Zn source to search for neutrino oscillations on a short baseline, V.N. Gavrin et al., arXiv:1807.02977, 2018.
Revised neutrino-gallium cross section and prospects of BEST in resolving the Gallium anomaly, Vladislav Barinov, Bruce Cleveland, Vladimir Gavrin, Dmitry Gorbunov, Tatiana Ibragimova, Phys.Rev. D97 (2018) 073001, arXiv:1710.06326.
BEST sensitivity to O(1) eV sterile neutrino, Vladislav Barinov, Vladimir Gavrin, Dmitry Gorbunov, Tatiana Ibragimova, Phys. Rev. D93 (2016) 073002, arXiv:1602.03826.
Gallium experiments with artificial neutrino sources as a tool for investigation of transition to sterile states, V. N. Gavrin, V. V. Gorbachev, E. P. Veretenkin, B. T. Cleveland, arXiv:1006.2103, 2010.

3 - Talks

Search for sterile neutrinos on the Gallium Germanium Neutrino Telescope with artificial neutrino sources in the BEST experiment, V. N. Gavrin, B. T. Cleveland, V. V. Gorbachev, T. V. Ibragimova, A. V. Kalikhov, Yu P. Kozlova, Yu A. Malyshkin, I. N. Mirmov, A. A. Shikhin, E. P. Veretenkin, J. Phys. Conf. Ser. 798 (2017) 012113. 2nd International Conference on Particle Physics and Astrophysics (ICPPA 2016): Moscow, Russia, October 10-14, 2016.
Investigation of a Possibility of Chromium-51 Accumulation in the SM-3 Reactor to Fabricate a Neutrino Source, E. G. Romanov, V. N. Gavrin, V. A. Tarasov, A. P. Malkov, A. V. Kupriyanov, S. N. Danshin, E. P. Veretenkin, J. Phys. Conf. Ser. 798 (2017) 012105. 2nd International Conference on Particle Physics and Astrophysics (ICPPA 2016): Moscow, Russia, October 10-14, 2016.
Current status of new SAGE project with $^{51}$Cr neutrino source, V. Gavrin et al., Phys. Part. Nucl. 46 (2015) 131-137. International Workshop on Prospects of Particle Physics: Neutrino Physics and Astrophysics.
Calorimetric method for determination of$^{51}$Cr neutrino source activity, E. P. Veretenkin, V. N. Gavrin, S. N. Danshin, T. V. Ibragimova, \relax Yu. P. Kozlova, I. N. Mirmov, Phys. Atom. Nucl. 78 (2015) 1606-1609. [Yad. Fiz.5,892(2014)].
Current status of SAGE new project with 51Cr neutrino source, V. Gavrin, 2014. PPP 2014, 26 January - 2 Ferbuary 2014, Valday, Russia.
Sterile Neutrino Searches with Ga, V. Gavrin, 2011. Short-Baseline Neutrino Workshop (SBNW11), 12-14 May 2011, Fermilab.
Radiochemical solar neutrino experiments, V. N. Gavrin, B. T. Cleveland, Nucl. Phys. Proc. Suppl. 221 (2011) 90-97, arXiv:nucl-ex/0703012. XXII Int. Conf. on Neutrino Physics and Astrophysics, Santa Fe, 13-19 June 2006.

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