Õîòÿíöåâ Àëåêñåé Íèêîëàåâè÷Í133,820.01.2020

Õîòÿíöåâ Àëåêñåé Íèêîëàåâè÷
(ðîä. 15.03.1971)
íñ ËÔÝÑÂ ÎÔÂÝ
èñïîëíèòåëü â ðàáîòàõ ïî ãîñçàäàíèþ (Ò2Ê è äð.)

Ñóììàðíûé ÏÐÍÄ (çà 2018-2019 ã.ã.): = 133.7712

ÑÒÀÒÜÈ Â ÈÍÎÑÒÐÀÍÍÛÕ ÐÅÔÅÐÈÐÓÅÌÛÕ ÆÓÐÍÀËÀÕ:

1)   K. Abe,…, A. Khotjantsev,… et al. (333 àâòîðà). Measurement of neutrino and antineutrino neutral-current quasielastic-like interactions on oxygen by detecting nuclear de-excitation $\gamma$-rays. Phys. Rev. D100 (2019), no. 11, 112009. DOI: 10.1103/PhysRevD.100.112009 (arXiv:1910.09439 [hep-ex]). ÏÐÍÄ= 4.368*30*0.04= 5.2416;
2)   K. Abe,…, A. Khotjantsev,… et al. (317 àâòîðîâ). Measurement of the $\nu_{\mu}$ charged-current cross sections on water, hydrocarbon, iron, and their ratios with the T2K on-axis detectors. PTEP (2019), Volume 2019, Issue 9, September 2019, 093C02. DOI: 10.1093/ptep/ptz070 (arXiv:1904.09611 [hep-ex]). ÏÐÍÄ= 2.022*30*0.04= 2.4264;
3)   K. Abe,…, A. Khotjantsev,… et al. (328 àâòîðîâ). Search for heavy neutrinos with the T2K near detector ND280. Phys.Rev. D100 (2019) no.5, 052006. DOI: 10.1103/PhysRevD.100.052006 (arXiv:1902.07598 [hep-ex]). ÏÐÍÄ= 4.368*30*0.04= 5.2416;
4)   K. Abe,…, A. Khotjantsev,… et al. (317 àâòîðîâ). Search for neutral-current induced single photon production at the ND280 near detector in T2K. J.Phys. G46 (2019) no.8, 08LT01. DOI: 10.1088/1361-6471/ab227d (arXiv:1902.03848 [hep-ex]). ÏÐÍÄ= 3.534*30*0.04= 4.2408;
5)   K. Abe,…, A. Khotjantsev,… et al. (321 àâòîð). Search for light sterile neutrinos with the T2K far detector Super-Kamiokande at a baseline of 295 km. Phys.Rev. D99 (2019) no.7, 071103. DOI: 10.1103/PhysRevD.99.071103 (arXiv:1902.06529 [hep-ex]). ÏÐÍÄ= 4.368*30*0.04= 5.2416;
6)   C. Ahdida,…, A. Khotyantsev,… et al. (333 àâòîðà). Sensitivity of the SHiP experiment to Heavy Neutral Leptons. JHEP 1904 (2019) 077. DOI: 10.1007/JHEP04(2019)077 (arXiv:1811.00930 [hep-ph]). ÏÐÍÄ= 5.833*30*0.04= 6.9996;
7)   C. Ahdida,…, A. Khotyantsev,… et al. (334 àâòîðà). The experimental facility for the Search for Hidden Particles at the CERN SPS. JINST 14 (2019) no.03, P03025. DOI: 10.1088/1748-0221/14/03/P03025 (arXiv:1810.06880 [physics.ins-det]). ÏÐÍÄ= 1.366*30*0.04= 1.6392;
8)   K. Abe,…, A. Khotjantsev,… et al. (322 àâòîðà). Search for CP Violation in Neutrino and Antineutrino Oscillations by the T2K Experiment with $2.2\times10^{21}$ Protons on Target. Phys.Rev.Lett. 121 (2018) no.17, 171802. DOI: 10.1103/PhysRevLett.121.171802. (arXiv:1807.07891 [hep-ex]). ÏÐÍÄ= 9.227*30*0.04= 11.0724;
9)   K. Abe,…, A. Khotjantsev,… et al. (305 àâòîðîâ). Characterization of nuclear effects in muon-neutrino scattering on hydrocarbon with a measurement of final-state kinematics and correlations in charged-current pionless interactions at T2K. Phys.Rev. D98 (2018) no.3, 032003. DOI: 10.1103/PhysRevD.98.032003. (arXiv:1802.05078 [hep-ex]); ÏÐÍÄ= 4.368*30*0.04= 5.2416;
10)   K. Abe,…, A. Khotjantsev,… et al. (304 àâòîðà). Measurement of inclusive double-differential $\nu_\mu$ charged-current cross section with improved acceptance in the T2K off-axis near detector. Phys.Rev. D98 (2018) 012004. DOI: 10.1103/PhysRevD.98.012004. (arXiv:1801.05148 [hep-ex]); ÏÐÍÄ= 4.368*30*0.04= 5.2416;
11)   K. Abe,…, A. Khotjantsev,… et al. (361 àâòîð). Measurement of the single ?^0-production rate in neutral current neutrino interactions on water. Phys.Rev. D97 (2018) no.3, 032002; DOI: 10.1103/PhysRevD.97.032002. (arXiv:1704.07467 [hep-ex]); ÏÐÍÄ= 4.368*30*0.04= 5.2416;
12)   A. Blondel,…, A. Khotjantsv,… et al. (16 àâòîðîâ). A fully active fine grained detector with three readout views. JINST 13 (2018) no.02, P02006; DOI: 10.1088/1748-0221/13/02/P02006. (arXiv:1707.01785 [physics.ins-det]). ÏÐÍÄ= 1.366*30*0.1= 4.098;
13)   K. Abe,…, A. Khotjantsev,… et al. (295 àâòîðîâ). First measurement of the $\nu_{\mu}$ charged-current cross section on a water target without pions in the final state. Phys.Rev. D97 (2018) no.1, 012001; DOI: 10.1103/PhysRevD.97.012001. (arXiv:1708.06771 [hep-ex]). ÏÐÍÄ= 4.368*30*0.04= 5.2416;
14)   K. Abe,…, A. Khotjantsev,… et al. (354 àâòîðà). Physics potentials with the second Hyper-Kamiokande detector in Korea. PTEP 2018 (2018) no. 6, 063C01, DOI: 10.1093/ptep/pty044. ÏÐÍÄ= 2.022*30*0.04= 2.4264;
15)    E. Cortina Gil, …, A. Khotyantsev, … et al. (199 author). Searches for lepton number violating K+ decays. Physics Letters B, Volume 797, Physics Letters B 10 October 2019, 134794, March 2018. ÏÐÍÄ = 4.162*30*0.06 = 7.4916
16)    E.Cortino Gil,…, A. Khotyantsev,… et al. (189 authors) First search for K+>?+??? using the decay-in-flight technique. Physics Letters B Volume 791, 10 April 2019, Pages 156-166. ÏÐÍÄ = 4.162*30*0.06 = 7.4916
17)   E.Cortino Gil,…, A. Khotyantsev,… et al. (189 authors) Search for heavy neutral lepton production in K+ decays. Physics Letters B Volume 791, 778(C):137-145, March 2018. ÏÐÍÄ = 4.162*30*0.06 = 7.4916
18)   E.Cortino Gil,…, A. Khotyantsev,… et al. (189 authors) Search for production of an invisible dark photon in ?0 decays JHEP 1905(2019)182, 28 May 2019 ÏÐÍÄ = 5.833*30*0.06 = 10.4994
19)   O. Mineev, … , A. Khotjantsev, … et al. (11 authors) Beam test results of 3D fine-grained scintillator detector prototype for a T2K ND280 neutrino active target. Nuclear Instrument and Methods in Physics Volume 923, 11 April 2019, Pages 134-138, ÏÐÍÄ = 1.433*30*0.1 = 4.2990
20)    O. Mineev, … , A. Khotjantsev, … et al. (11 authors) Parameters of a fine-grained scintillator detector prototype with 3D WLS fiber readout for a T2K ND280 neutrino active target.. Nuclear Instruments and Methods in Physics Research, Volume 936, Pages 136-138, September 2018, ÏÐÍÄ = 1.433*30*0.1 = 4.2990
21)    S. Fedotov, A. Kleymenova, A. Khotjantsev (3 authors) New CHOD Detector for the NA62 experiment at CERN // Physics of Particles and Nuclei, 2018, Vol. 49, No. 1 ÏÐÍÄ = (60*0.549)/3 = 10.9800





Ñóììà ïî ñòàòüÿì â èíîñòðàííûõ ðåôåðèðóåìûõ æóðíàëàõ: 122.1462


ÄÎÊËÀÄÛ ÍÀ ÊÎÍÔÅÐÅÍÖÈßÕ è ÒÐÓÄÛ ÊÎÍÔÅÐÅÍÖÈÉ:
1)   O. Basille,…, A. Khotyantsev,… et al. (36 àâòîðîâ). Baby MIND Readout Electronics Architecture for Accelerator Neutrino Particle Physics Detectors Employing Silicon Photomultipliers. JPS Conf.Proc. 27 (2019) 011011. DOI: 10.7566/JPSCP.27.011011. ÏÐÍÄ= 8*0.1 = 0.8
2)   G. Lamanna, …, A. Khotyantsev, …et. al. (190 authors) NA62 and NA48/2 results on search for Heavy Neutral Leptons. January 2018 The European Physical Journal Conferences 179:01009 (https://doi.org/10.1051/epjconf/201817901009) ÏÐÍÄ = 8*0.06 = 0.48
3)   R. Aliberti, …, A. Khotyantsev, …et. al. Search for K+ > ?+??? at NA62. (245 authors) EPJ Web of Conferences 2018 (https://www.epj-conferences.org/articles/epjc onf/pdf/2018/17/epjconf_icnfp2018_02002.pdf) ÏÐÍÄ = 8*0.04 = 0.32
4)   P. Letizia, …, A. Khotyantsev, …et. al. (245 authors) Search for heavy neutrinos at the NA48/2 and NA62 experiments at CERN. EPJ Web of Conferences 2018 (10.1051/epjconf/201818202095) ÏÐÍÄ = 8*0.04 = 0.32
5)   V. Duk, …, A.Khotyantsev, …et. al. (245 authors) First results on the K+ > ?+??? decay search from NA62. EPJ Web of Conferences 2018 (10.1051/epjconf/201819101002) ÏÐÍÄ = 8*0.04 = 0.32
6)   R. Fantechi, …, A. Khotyantsev, …et. al. (245 authors) Recent results from NA62 and NA48. EPJ Web of Conferences 2018 (https://doi.org/10.1051/epjconf/201819200030) ÏÐÍÄ = 8*0.04 = 0.32


Ñóììà ïî äîêëàäàì/òðóäàì êîíôåðåíöèé: 2,2400 .

ÝËÅÊÒÐÎÍÍÛÅ ÏÐÅÏÐÈÍÒÛ

1)   K. Abe,…, A. Khotjantsev,… et al. (344 àâòîðà). Search for Electron Antineutrino Appearance in a Long-baseline Muon Antineutrino Beam. arXiv:1911.07283 [hep-ex]. ÏÐÍÄ=3*0.04= 0.12;
2)   K. Abe,…, A. Khotjantsev,… et al. (335 àâòîðîâ). Constraint on the Matter-Antimatter Symmetry-Violating Phase in Neutrino Oscillations. arXiv:1910.03887 [hep-ex]. ÏÐÍÄ=3*0.04= 0.12;
3)   C. Ahdida,…, A. Khotyantsev,… et al. (338 àâòîðîâ). Fast simulation of muons produced at the SHiP experiment using Generative Adversarial Networks. arXiv:1909.04451 [physics.ins-det]. ÏÐÍÄ=3*0.04= 0.12;
4)   K. Abe,…, A. Khotjantsev,… et al. (325 àâòîðîâ). First Measurement of the Charged Current $\overline{\nu}_{\mu}$ Double Differential Cross Section on a Water Target without Pions in the final state. arXiv:1908.10249 [hep-ex]. ÏÐÍÄ=3*0.04= 0.12;
5)   K. Abe,…, A. Khotjantsev,… et al. (359 àâòîðîâ). J-PARC Neutrino Beamline Upgrade Technical Design Report. arXiv:1908.05141 [physics.ins-det]. ÏÐÍÄ=3*0.04= 0.12;
6)   K. Abe,…, A. Khotjantsev,… et al. (385 àâòîðîâ). T2K ND280 Upgrade - Technical Design Report. arXiv:1901.03750 [physics.ins-det]. ÏÐÍÄ=3*0.04= 0.12;
7)   F. Ambrosino,…, A. Khotjantsev,… et al. (68 àâòîðîâ). KLEVER: An experiment to measure BR($K_L\to\pi^0\nu\bar{\nu}$) at the CERN SPS. arXiv:1901.03099 [hep-ex]. ÏÐÍÄ=3*0.075= 0.225;
8)   K. Abe,…, A. Khotjantsev,… et al. (314 àâòîðîâ). Hyper-Kamiokande Design Report. arXiv:1805.04163 [physics.ins-det]. ÏÐÍÄ=3*0.04= 0.12;
9)   B. Abi,…, A. Khotjantsev,… et al. (1099 àâòîðîâ). The DUNE Far Detector Interim Design Report, Volume 3: Dual-Phase Module. arXiv:1807.10340 [physics.ins-det]. ÏÐÍÄ=3*0.01= 0.03;
10)   B. Abi,…, A. Khotjantsev,… et al. (1099 àâòîðîâ). The DUNE Far Detector Interim Design Report, Volume 2: Single-Phase Module. arXiv:1807.10327 [physics.ins-det]. ÏÐÍÄ=3*0.01= 0.03;
11)   B. Abi,…, A. Khotjantsev,… et al. (1099 àâòîðîâ). The DUNE Far Detector Interim Design Report, Volume 1: Physics, Technology and Strategies. arXiv:1807.10334 [physics.ins-det]. ÏÐÍÄ=3*0.01= 0.03;
12)   M. Moulson, … , A.Khotjantsev, … et al. (78 authors) «KLEVER: An experiment to measure BR(KL>?0???) at the CERN SPS» arXiv:1901.03099 url: https://arxiv.org/abs/1901.03099 ÏÐÍÄ = 3*0.075 = 0.23


Ñóììà ïî ïðåïðèíòàì: 1.3850

Êóðñ ëåêöèé íà êàôåäðå ÔÂÊ â ÌÔÒÈ:
"Ìåòîä Ìîíòå-Êàðëî â ÿäåðíîé ôèçèêå"
ÏÐÍÄ = 8




Èòîãî çà 2018-2019 ã.ã.:
ÏÐÍÄ= 122.1462 + 2.24 + 1.385 + 8 = 133.7712