Рейтинг (ПРНД) сотрудников ИЯИ РАН сезона 2022 [312]

по группам: Теоретическая физика, Ядерная физика, Нейтринная физика и КЛ, физика Частиц, Ускорительная физика, Междисциплинарные исследования
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ФИОГРПРНДдатадолжн
Минеев Олег ВикторовичЧ130,419.01.2022С

Минеев Олег Викторович
род. 13.02.1964, снс ОФВЭ, кфмн
ПРНД за 2020-2021 гг


Суммарный ПРНД (за 2020-2021 г.г.): 130.4275


СТАТЬИ В ИНОСТРАННЫХ РЕФЕРИРУЕМЫХ ЖУРНАЛАХ:
>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> 2020 >>>>>>>>>>>>>>>>>>>>>>>>>>>>
1) A. Blondel,…, O. Mineev, … et al. (50 авторов).
The SuperFGD Prototype Charged Particle Beam Tests
Published in JINST 15 (2020) no.12, P12003
ПРНД= 1.415*30*0.07 = 2.9715;

2) K. Abe,…, O. Mineev, … et al. (333 авторов).
Simultaneous measurement of the muon neutrino charged-current cross section on oxygen and carbon without pions in the final state at T2K
Published in Phys.Rev. D101 (2020) no.11, 112004
ПРНД= 5.296*30*0.028 = 4.4486;

3) C. Ahdida ,…, O. Mineev, … et al. (332 авторов).
Measurement of the muon flux from 400 GeV/c protons interacting in a thick molybdenum/tungsten target
Published in European Physical Journal C 80 (2020) 3, 284
ПРНД= 4.590*30*0.028 = 3.8556;

4) K. Abe ,…, O. Mineev, … et al. (369 авторов).
Measurement of the charged-current electron (anti-)neutrino inclusive cross-sections at the T2K off-axis near detector ND280
Published in JHEP 10 (2020) 114
ПРНД= 5.810*30*0.028 = 4.8804;

5) K. Abe,…, O. Mineev, … et al. (352 авторов).
First combined measurement of the muon neutrino and antineutrino charged-current cross section without pions in the final state at T2K
Published in Phys.Rev. D101 (2020) no.11, 112001
ПРНД= 5.296*30*0.028 = 4.4486;

6) K. Abe,…, O. Mineev, … et al. (376 авторов).
Measurement of the muon neutrino charged-current single ?+ production on hydrocarbon using the T2K off-axis near detector ND280
Published in Phys.Rev. D101 (2020) no.1, 012007
ПРНД= 5.296*30*0.028 = 4.4486

7) K. Abe,…, O. Mineev, … et al. (325 авторов).
First Measurement of the Charged Current ????? Double Differential Cross Section on a Water Target without Pions in the final state
Published in Phys.Rev. D102 (2020) no.1, 012007
ПРНД= 5.296*30*0.028 = 4.4486;
8) B. Abi,…, O. Mineev, … et al. (936 авторов).
Volume IV. The DUNE far detector single-phase technology
Published in JINST 15 (2020) no.08, T08010
ПРНД= 1.415*30*0.018 = 0.7641;
9) B. Abi,…, O. Mineev, … et al. (936 авторов).
Volume I. Introduction to DUNE
Published in JINST 15 (2020) no.08, T08008
ПРНД= 1.415*30*0.018 = 0.7641;
10) B. Abi,…, O. Mineev, … et al. (936 авторов).
Volume III. DUNE far detector technical coordination
Published in JINST 15 (2020) no.08, T08009
ПРНД= 1.415*30*0.018 = 0.7641

11) B. Abi,..., O. Mineev,... et al. (992 авторов).
First results on ProtoDUNE-SP liquid argon time projection chamber performance from a beam test at the CERN Neutrino Platform.
Published in JINST 15(2020) 12, P12004; DOI: 10.1088/1748-0221/15/08/T08008 (arXiv:2007.06722 [physics.ins-det]).
ПРНД=1.415*30*0.018 = 0.7641;

12) B. Abi,..., O. Mineev,... et al. (975 авторов).
Neutrino interaction classification with a convolutional neural network in the DUNE far detector.
Phys.Rev. D102(2020) 9, 092003; DOI:10.1103/PhysRevD.102.092003(arXiv:2006.15052 [physics.ins-det]).
ПРНД=5.296*30*0.018 = 2.8598;

13) B. Abi,..., O. Mineev,... et al. (973 авт).
Long-baseline neutrino oscillation physics potential of the DUNE experiment.
Eur.Phys.J C80(2020) 10, 978; DOI: 10.1140/epjc/s10052-020-08456-z (arXiv:2006.16043 [hep-ex]).
ПРНД=4.590*30*0.018 = 2.4786;

14) K. Abe,…, O. Mineev, … et al. (344 авторов).
Search for Electron Antineutrino Appearance in a Long-baseline Muon Antineutrino Beam
Published in Phys.Rev.Lett. 124 (2020) 16, 161802
ПРНД= 9.161*30*0.028= 7.6952;

15) K. Abe,…, O. Mineev, … et al. (335 авторов).
Constraint on the Matter-Antimatter Symmetry-Violating Phase in Neutrino Oscillations
Published in Nature 580 (2020) 7803, 339-344, Nature 583 (2020) 7814, E16 (erratum)
ПРНД= 49.962*30*0.028 = 41.96808

sum=87,568
>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>> 2021 >>>>>>>>>>>>>>>>>>>>>>>>>>>>

1)   K. Abe,…, O. Mineev, … et al. (311 авт).
First T2K measurement of transverse kinematic imbalance in the muon-neutrino charged-current single-?+ production channel containing at least one proton.
Phys.Rev.D 103 (2021) 11, 112009; DOI: 10.1103/PhysRevD.103.112009 (arXiv:2102.03346).
ПРНД= 5.296*30*0.028= 4.44864;

2)   K. Abe,…, O. Mineev, … et al. (501 авт).
Supernova model discrimination with Hyper-Kamiokande.
Astrophys.J. 916 (2021) 1, 15; DOI: 10.3847/1538-4357/abf7c4 (arXiv:2101.05269).
ПРНД= 5.874*30*0.018= 3.17196;

3)   K. Abe,…, O. Mineev , … et al. (310 авт).
Improved constraints on neutrino mixing from the T2K experiment with 3.13?10^21 protons on target.
Phys.Rev.D 103 (2021) 11, 112008; DOI: 10.1103/PhysRevD.103.112008 (arXiv:2101.03779).
ПРНД= 5.296**30*0.028= 4.44864;

4) A. Abed Abud,…, O. Mineev,… et al. (1181 авт).
Searching for solar KDAR with DUNE.
JCAP 10 (2021) 065; DOI: 10.1088/1475-7516/2021/10/065 (arXiv:2107.09109 ).
ПРНД= 5.839*30*0.012= 2.10204;

5) A. Abed Abud,…, O. Mineev,… et al. (1086 авт).
Deep Underground Neutrino Experiment (DUNE) near detector conceptual design
report.
Instruments 5 (2021) 4, 31; DOI: 10.3390/instruments5040031 (arXiv: 2103.1391)
ПРНД= 8*0.012= 0.096;

6) C. Ahdida,…, O. Mineev,… et al. (333 авт).
Sensitivity of the SHiP experiment to dark photons decaying to a pair of charged
particles.
Eur.Phys.J.C 81 (2021) 5, 451; DOI: 10.1140/epjc/s10052-021-09224-3 (arXiv:2011.05115).
ПРНД= 4.590*30*0.028= 3.8556;

7) C. Ahdida,…, O. Mineev ,… et al. (338 авт).
Sensitivity of the SHiP experiment to light dark matter.
JHEP 04 (2021) 199; DOI: 10.1007/JHEP04(2021)199 (arXiv:2010.11057).
ПРНД= 5.810*30*0.028= 4.8804;

8) B. Abi,…, O. Mineev,… et al. (975 авт).
Prospects for Beyond the Standard Model Physics Searches at the Deep Underground Neutrino Experiment.
Eur.Phys.J.C 81 (2021) 4, 322; DOI: 10.1140/epjc/s10052-021-09007-w (arXiv:2008.12769).
ПРНД= 4.590*30*0.018 = 2.4786;

9) K. Abe,…, O. Mineev,… et al. (297 авт).
T2K measurements of muon neutrino and antineutrino disappearance using 3.13 x 10^21 protons on target.
Phys.Rev.D 103 (2021) 1, L011101; DOI: 10.1103/PhysRevD.103.L011101 (arXiv:2008.07921).
ПРНД= 5.296**30*0.028= 4.44864;

10) K. Abe,…, O. Mineev,… et al. (371 авт).
Measurements of $\bar\nu_mu$ and $\bar\nu_mu + \nu_mu$ charged-current cross sections without detected pions nor protons on water and hydrocarbon at mean antineutrino energy of 0.86 GeV.
PTEP 2021 (2021) 4, 043C01; DOI: 10.1093/ptep/ptab014 (arXiv:2004.13989).
ПРНД= 2.572*30*0.028= 2.16048;
11) B. Abi, …, O. Mineev,… et al. (973 авт).
Supernova neutrino burst detection with the Deep Underground Neutrino Experiment.
Eur.Phys.J.C 81 (2021) 5, 423; DOI: 10.1140/epjc/s10052-021-09166-w (arXiv: 2008.06647).
ПРНД= 4.590*30*0.018 = 2.4786;

sum=34.5695

Sum: 122.1375 за журналы

>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>
Доклады на международной конференции и труды:


Sum: 0 за конференции


>>>>>>>>>>>> Подача заявок на гранты >>>>>>>>>>>>>>>>>>>>>>>>>>

1. Заявка №19-12-00325 на продление гранта РНФ (2022 – совместно с Ю.Г. Куденко, М.М Хабибуллиным и С.А. Федотовым).
Поиск СР нарушения в нейтринных осцилляциях, разработка и создание 3D сегментированного сцинтилляционного детектора нейтрино
ПРНД = 10/4 = 2.5

2. Заявка № 22-12-00252 на грант РНФ (2022, совместно с М.М Хабибуллиным, А.Н. Хотянцевым).
Разработка и создание Черенковского вето-детектора на основе спектросмещающих концентраторов света для нейтринной обсерватории Hyper-Kamiokande
ПРНД = 10/3 = 3.33

Sum: 5.83 за гранты

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ЭЛЕКТРОННЫЕ ПРЕПРИНТЫ :
_____________________________________________________________


1) A. Korzenev,…, O. Mineev,… et al. (14 авт).
A 4? time-of-flight detector for the ND280/T2K upgrade. arXiv:2109.03078 [physics.ins-det].
ПРНД=3*0.125= 0.375;

2) S. Fedotov,…, O. Mineev,… et al. (8 авт).
Scintillator cubes for 3D neutrino detector SuperFGD. arXiv:2111.07305 [physics.ins-det].
ПРНД=3*0.3= 0.9;

3) A. Abed Abud,…, O. Mineev,… et al. (1153 авт).
Low exposure long-baseline neutrino oscillation sensitivity of the DUNE experiment. arXiv:2109.01304 [hep-ex].
ПРНД=3*0.012= 0.036;

4) A. Abed Abud,…, O. Mineev,… et al. (1177 авт).
Design, construction and operation of the ProtoDUNE-SP Liquid Argon TPC. arXiv:2108.01902 [physics.ins-det].
ПРНД=3*0.012= 0.036;

5) B. Abi,…, O. Mineev ,… et al. (973 авт).
Experiment simulation configurations approximating DUNE TDR. arXiv:2103.04797 [hep-ex].
ПРНД=3*0.018= 0.054;

6) K. Abe,…, O. Mineev,… et al. (389 авт).
The Hyper-Kamiokande experiment – Snowmass LOI. arXiv:2009.00794 [physics.ins-det]. ПРНД=3*0.028= 0.084;

7) A. Ajmi,…, O. Mineev,… et. Al (77 авт).
BabyMIND detector first physics run. arXiv:2004.05245 [physics.ins-det].
ПРНД=3*0.07= 0.21;

8) B. Abi,…, O. Mineev,… et al. (936 авт).
Deep Underground Neutrino Experiment (DUNE), Far Detector Technical Design Report, Volume II DUNE Physics. arXiv:2002.03005 [hep-ex].
ПРНД=3*0.018= 0.054;

9) C. Ahdida,…, O. Mineev,… et al. (343 авт).
SND@LHC. arXiv:2002.08722 [physics.ins-det].
ПРНД=3*0.028= 0.084;

10) C. Ahdida,…, O. Mineev,… et al.(333 авт).
Measurement of the muon flux for the SHiP experiment. arXiv:2001.04784 [physics.ins-det].
ПРНД=3*0.028= 0.084;

11) C. Ahdida,…, O. Mineev,… et al.(338 авт).
Track reconstruction and matching between emulsion and silicon pixel detectors for the SHiP-charm experiment. arXiv:2112.11754 [physics.ins-det].
ПРНД=3*0.028= 0.084;

12) C. Ahdida,…, O. Mineev,… et al.(345 авт).
The SHiP experiment at the proposed CERN SPS Beam Dump Facility
arXiv:2112.01487 [physics.ins-det].
ПРНД=3*0.028= 0.084;

14) H. Ito,…, O. Mineev,… et al.(27 авт).
Measurement of structure dependent radiative K+>e+?? decays using stopped positive kaons
arXiv:2107.03583 [physics.ins-det].
ПРНД=3*0.125= 0.375;


Sum: 2.46 за препринты

__________________________________________________________________
Итого за 2020-2021 г.г.: ПРНД= 130,427