Ðåéòèíã (ÏÐÍÄ) ñîòðóäíèêîâ ÈßÈ ÐÀÍ ñåçîíà 2021 [306]
ïî ãðóïïàì: Òåîðåòè÷åñêàÿ ôèçèêà, ßäåðíàÿ ôèçèêà, Íåéòðèííàÿ ôèçèêà è ÊË, ôèçèêà ×àñòèö, Óñêîðèòåëüíàÿ ôèçèêà, Ìåæäèñöèïëèíàðíûå èññëåäîâàíèÿ
ÔÈÎ | ÃÐ | ÏÐÍÄ | äàòà |
Êàçàëîâ Âëàäèìèð Âëàäèìèðîâè÷ | × | 170,0 | 18.01.2021 | |
Êàçàëîâ Âëàäèìèð Âëàäèìèðîâè÷, äàòà ðîæäåíèÿ 28.04.1982,
ñ.í.ñ. ÁÍÎ ÈßÈ ÐÀÍ,
ÏÐÍÄ çà 2019-2020 ãã.
Ïóáëèêàöèè:
2020ã.
1. D.S. Leonard, K.I. Hahn, W.G. Kang, V. Kazalov, G.W. Kim, Y.D. Kim, E.K. Lee, M.H. Lee, S.Y. Park, E. Sala. “Development of an array of fourteen HPGe detectors having 70% relative efficiency each”, Nucl.Instrum.Meth.A 989 (2021) 164954, 10.1016/j.nima.2020.164954 // 30*1.265*0.125=4.74 á
2. E.N. Alexeev, A.M. Gangapshev, Yu.M. Gavrilyuk, A.M. Gezhaev, V.V. Kazalov, V.V. Kuzminov, S.I. Panasenko, O.D. Petrenko, S.S. Ratkevich. “Annual variations of the 214Po, 213Po and 212Po half-life values”, J.Phys.Conf.Ser. 1690 (2020) 1, 012029, 10.1088/1742-6596/1690/1/012029 // 8*1,5*0,3=3,6 á
3. O.D. Petrenko, A.M. Gangapshev, Yu.M. Gavrilyuk, V.V. Kazalov, V.V. Kuzminov, S.I.Panasenko, S.S. Ratkevich, D.A. Tekueva. “Improving Calibration of the Large Low-Background Proportional Counter”, J.Phys.Conf.Ser. 1690 (2020) 1, 012037, 10.1088/1742-6596/1690/1/012037 // 8*1,5*0,3=3,6 á
4. M.Agostini, G.R. Araujo, A.M. Bakalyarov, M. Balata et al., “Final Results of GERDA on the Search for Neutrinoless Double-? Decay”, Phys.Rev.Lett. 125 (2020) 252502, 10.1103/PhysRevLett.125.252502 // 30*8,385*0,047=11,8 á
5. D.S. Leonard, K.I. Hahn, W.G. Kang, V. Kazalov, G.W. Kim, Y.D. Kim, E.K. Lee, M.H. Lee, S.Y. Park. “Measurement of the Background Activities of a 100Mo-enriched Powder Sample for an AMoRE Crystal Material by using Fourteen High-Purity Germanium Detectors”. arXiv: 2009.02021 // 3*0,125=0,375 á
6. D.S. Leonard, K.I. Hahn, W.G. Kang, V. Kazalov, G.W. Kim, Y.D. Kim, E.K. Lee, M.H. Lee, S.Y. Park, E. Sala. “Development of an array of HPGe detectors with 980% relative efficiency”, e-Print: 2009.00483 // 3*0,125=0,375 á
7. M.Agostini, G.R. Araujo, A.M. Bakalyarov, M. Balata et al., “First Search for Bosonic Superweakly Interacting Massive Particles with Masses up to 1 MeV/c2 with GERDA”, Phys.Rev.Lett. 125 (2020) 1, 011801, 10.1103/PhysRevLett.125.011801 // 30*8,385*0,047=11,8 á
8. D.S. Leonard, K.I. Hahn, W.G. Kang, V. Kazalov, G.W. Kim, Y.D. Kim, E.K. Lee, M.H. Lee, S.Y. Park, E. Sala. “Measurement of the Background Activities of a 100Mo-enriched Powder Sample for an AMoRE Crystal Material by Using a Single High-Purity Germanium Detector”, J.Korean Phys.Soc. 76 (2020) 12, 1060-1066, 10.3938/jkps.76.1060 // 30*0.535*0.125=2 á
9. V.B. Petkov, A.N. Fazliakhmetov, A.M. Gangapshev, V.N. Gavrin et al., “Baksan large volume scintillation telescope: a current status”, J.Phys.Conf.Ser. 1468 (2020) 1, 012244, 10.1088/1742-6596/1468/1/012244 // 8*1.5*0.125=1.5 á
10. A. Kozlov, D. Chernyak, Y. Takemoto et al., “Detectors for direct Dark Matter search at KamLAND”, Nucl.Instrum.Meth.A 958 (2020) 162239, 10.1016/j.nima.2019.05.080 // 30*1.265*0.125=4.74
2019ã.
11. M. Agostini, A.M. Bakalyarov, E. Andreotti et al., «Characterization of 30 76Ge enriched Broad Energy Ge detectors for GERDA Phase II», European Physical Journal C 79(11), (2019), 978 [êîïèÿ: arXiv:1901.06590, (2019)]. // 30*4,389*0,047=6.18 á
12. V. Alenkov, H. W. Bae, J. Beyer et al., “First Results from the AMoRE-Pilot neutrinoless double beta decay experiment”, European Physical Journal C 79(9), (2019), 791[êîïèÿ: arXiv:1903.09483, (2019)], // 30*4,389*0,047=6,18 á
13. M. Agostini, A. M. Bakalyarov, M. Balata et al., “Probing Majorana neutrinos with double-? decay”, Science 365(6460), (2019), 1445 // 30*41,845*0,047=59 á
14. Yu.M. Malyshkin, A.N. Fazliakhmetov, A.M.Gangapshevet al., “Modeling of a MeV-scale particle detector based on organic liquid scintillator”, Nucl. Instr. and Meth. in Phys. Res. A, 951 (2020), 162920. // 30*1,265*0,125*1,5=7,2 á
15. V.V.Kazalov, A.M.Gangapshev, Yu.M.Gavrilyuk, V.V.Kuzminov, S.I.Panasenko, O.D.Petrenko, S.S.Ratkevich, D.A.Tekueva, «The background simulation of experiment for searching of 2?2K capture in Xe-124», J. Phys.: Conf. Ser. 1390 (2019), 012055 [êîïèÿ: arXiv:1812.04500, (2018)] // 8*0,3*1,5= 3,6 á
16. M. Agostini, A. M. Bakalyarov, M. Balata et al., “Searching for neutrinoless double beta decay with GERDA”, J. Phys.: Conf. Ser. 1342 (2019) 012005 // 8*0,047=0,4 á
17. A. Kozlov, D. Chernyak, Y. Takemoto, K. Fushimi, K. Imagawa, K. Yasuda, H. Ejiri, R. Hazama, H. Ikeda, K. Inoue, S. Yoshida, R. A. Etezov, Yu. M. Gavrilyuk, V. V. Kazalov, V. V. Kuzminov andS. I. Panasenko, “The Dark Matter search at KamLAND”, J. Phys.: Conf. Ser. 1390 (2019), 012118 // 8*0,125= 1 á
18. Yu.M. Gavrilyuk, A.M. Gangapshev, V.V. Kazalov, V.V. Kuzminov, S.I. Panasenko, A.D. Petrenko, S.S. Ratkevich, D.A. Tekueva, and S.P. Yakimenko, “Search for double K-capture of 124Xe with the large volume copper proportional counter”, Proceedings of International Conference “The multi-messenger astronomy: gamma-ray bursts, search for electromagnetic counterparts to neutrino events and gravitational waves”, 7-14 October 2018, Publishing house SNEG, Pyatigorsk, 2019, ISBN 978-5-6041711-1-0, pp. 66-73. DOI: 10.26119/SAO.2019.1.35512 // 8*0,3*1,5= 3,6 á
19. E.N.Alexeev, Yu.M.Gavrilyuk, A.M.Gangapshev, A.M.Gezhaev, V.V.Kazalov, V.V.Kuzminov, S.I.Panasenko, S.S.Ratkevich, “Results of three years search for the 213Po half-life variations”, Proceedings of the International Conference "The multi-messenger astronomy: gamma-ray bursts, search for electromagnetic counterparts to neutrino events and gravitational waves", Russia, Nizhnij Arkhyz (SAO RAS), Terskol (BNO INR RAS), October, 7 - 14, 2018, Publishing house SNEG, Pyatigorsk, 2019, ISBN 978-5-6041711-1-0, pp. 9-15. DOI: 10.26119/SAO.2019.1.35433 // 8*0,3*1,5= 3,6 á
20. I.R. Barabanov, L.B. Bezrukov, A.V. Veresnikova, Yu.M. Gavriluk, V.I. Gurentsov, V.V. Kazalov, V.V.Kuzminov, G.Ya. Novikova, S.V. Semenov, V.V. Sinev, G.O. Tsvetkov, E.A. Yanovich, «Searches for Neutrinoless Double-Beta Decay of the Isotope 150Nd by Means of a Liquid Organic Scintillator Detector», Phys. Atom. Nuclei (2019) 82: 89. // 60*0,328*0,125*1,5=3,69 á
21. Alenkov A., Buzanov O., Dosovitskii A., Kazalov V., Kornoukhov V., Mikhlin A. (2019) Enriched 40Ca100MoO4 Single Crystalline Material for Search of Neutrinoless Double Beta Decay. In: Korzhik M., Gektin A. (eds) Engineering of Scintillation Materials and Radiation Technologies. ISMART 2018. Springer Proceedings in Physics, vol 227. Springer, Cham // 8*0,3= 2,4 á
22. E. Lee, K.I. Hahn, E. Jeon, W. Kang, V. Kazalov, G. Kim, Y. Kim, M.H. Lee, D.S. Leonard, S.y. Park, “Measurements of detector material samples with two HPGe detectors at the YangYang Underground Lab”, Proc. of Science (ICHEP2018) 340 (2019), 809 // 8*0,125= 1 á
23. S.Y. Park, G. Kim, I. Hahn, W. Kang, Y. Kim, E. Lee, M. Lee, D.S. Leonard, V. Kazalov, “An enriched 100Mo powder measurement by an array of HPGe detectors”, Proc. of Science (ICHEP2018) 340 (2019), 783 // 8*0,125= 1 á
?=143,92 á
Äîêëàäû:
2020 ã.
1. Yu. M. Gavrilyuk, A. M. Gangapshev, V. V. KAZALOV, V. V. Kuzminov, S. I. Panasenko, O.D. Petrenko, S. S. Ratkevich, D. A. Tekueva. “Improving the precision of calibrating a large low-background proportional counter”, The talk at the 5th International Conference on Particle Physics and Astrophysics (ICPPA-2020), Moscow, Russia, 5- 9 October 2020, https://indico.particle.mephi.ru/event/35/contributions/2280/, //10+15*0,3=14,5 á
2. E.N.Alexeev, Yu.M.Gavrilyuk, A.M.Gangapshev, A.M.Gezhaev, V.V.Kazalov, V.V.KUZMINOV, S.I.Panasenko, S.S.Ratkevich. “Annual variations of the 214Ðî, 213Ðî and 212Ðî half-life values”, The talk at the 5th International Conference on Particle Physics and Astrophysics (ICPPA-2020), Moscow, Russia, 5- 9 October 2020, https://indico.particle.mephi.ru/event/35/contributions/2263/, //15*0,3=4,5 á
2019ã.
1. Z.A. Akhmatov, S.S. Berezin, Yu.M. Gavrilyuk et al., “Search for solar axions in BNO INR RAS”, The talk at the 19th Lomonosov Conference on Elementary Particle Physics, MSU, Moscow, Russia, 22-28 August 2019. http://lomcon.ru/?page_id=204, //15*0,125=1,88 á
? = 1,88+14,5+4,5=20,88 á
Ïîäàííûå çàÿâêè â ôîíäû:
Íåò
Ðóêîâîäñòâî ñîèñêàòåëåì:
Íåò
Ðóêîâîäñòâî äèïëîìíèêîì:
1. Ñòóäåíò 2 êóðñà ìàãèñòðàòóðû ÍÈßÓ ÌÈÔÈ, ãðóïïà Ì19-106, Àáäûëäàåâ Ýäèëü Ðóñëàíîâè÷ // 5/2=2,5 á
2. Ñòóäåíò 2 êóðñà ìàãèñòðàòóðû ÍÈßÓ ÌÈÔÈ, ãðóïïà Ì19-106, Äåâÿòêîâ Ñåì¸í Äåíèñîâè÷ // 5/2=2,5 á
? =5 á
Âåäåíèå êóðñà ïðàêòè÷åñêèõ çàíÿòèé:
Íåò
Èòîãî = 143,92+20,88+5=170 á