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Квантовые технологии искусственного интеллекта
Mazurenko, V. V.
(Superviser)
Mazurenko, V. G.
(CoI)
Vaynshteyn, I. A.
(CoI)
Sotnikov, O. M.
(CoI)
Prishchenko, D. A.
(CoI)
Vokhmintsev, A. S.
(CoI)
Petrenev, I. A.
(CoI)
Talantsev, E. F.
(CoI)
Yakovlev, I. A.
(CoI)
Kashin, I. V.
(CoI)
Rudenko, A. N.
(CoI)
Pushkarev, G. V.
(CoI)
Stepanov, E. A.
(CoI)
Department of Theoretical Physics and Applied Mathematics
Department of Physical Techniques and Devices for Quality Control
Research and Education Center "Nanomaterials and Nanotechnologies"
Institute of Physics and Technology
项目
:
Development Project
综述
指纹
科研成果
(9)
科研成果
每年的科研成果
2020
2020
2020
8
Article
1
Conference contribution
每年的科研成果
每年的科研成果
9 个结果
出版年、标题
(降序)
出版年、标题
(升序)
题目
类型
搜索结果
2020
Advanced McMillan's equation and its application for the analysis of highly-compressed superconductors
Talantsev, E. F.
,
9月 2020
,
在:
Superconductor Science and Technology.
33
,
9
,
23 页码
, 094009.
科研成果
:
Article
›
同行评审
Phonons
100%
Superconducting materials
83%
Phonon
71%
Superconductor
71%
Superconductivity
49%
10
引用 (Scopus)
Effect of annealing on photoluminescence properties in zirconium dioxide nanotubes
Vokhmintsev, A. S.
,
Kamalov, R. V.
,
Petrenyov, I. A.
&
Weinstein, I. A.
,
9 12月 2020
,
VII International Young Researchers'' Conference - Physics, Technology, Innovations, PTI 2020.
Volkovich, V. A., Kashin, I. V., Smirnov, A. A. & Narkhov, E. D. (编辑).
American Institute of Physics Inc.
,
4 页码
030033. (AIP Conference Proceedings; 卷 2313).
科研成果
:
Conference contribution
›
同行评审
开放访问
dioxides
100%
nanotubes
87%
recharging
68%
photoluminescence
64%
annealing
55%
1
引用 (Scopus)
Field evolution of the spin-liquid candidate YbMgGaO4
Bachus, S.
,
Iakovlev, I. A.
,
Li, Y.
,
Woerl, A.
,
Tokiwa, Y.
,
Ling, L.
,
Zhang, Q.
,
Mazurenko, V. V.
,
Gegenwart, P.
&
Tsirlin, A. A.
,
28 9月 2020
,
在:
Physical Review B.
102
,
10
,
9 页码
, 104433.
科研成果
:
Article
›
同行评审
Magnetization
100%
Specific heat
88%
plateaus
78%
Exchange coupling
77%
Magnetic susceptibility
67%
6
引用 (Scopus)
In-plane p-wave coherence length in iron-based superconductors
Talantsev, E. F.
,
9月 2020
,
在:
Results in Physics.
18
,
10 页码
, 103339.
科研成果
:
Article
›
同行评审
开放访问
iron
100%
symmetry
81%
superconductivity
78%
temperature ratio
58%
critical temperature
41%
4
引用 (Scopus)
Multiscale structural complexity of natural patterns
Bagrov, A. A.
,
Iakovlev, I. A.
,
Iliasov, A. A.
,
Katsnelson, M. I.
&
Mazurenko, V. V.
,
12月 2020
,
在:
Proceedings of the National Academy of Sciences of the United States of America.
117
,
48
,
页码 30241-30251
11 页码
科研成果
:
Article
›
同行评审
开放访问
Phase Transition
100%
Machine Learning
89%
Emotions
62%
Brain
38%
11
引用 (Scopus)
Neural network agent playing spin Hamiltonian games on a quantum computer
Sotnikov, O. M.
&
Mazurenko, V. V.
,
3 4月 2020
,
在:
Journal of Physics A: Mathematical and Theoretical.
53
,
13
,
13 页码
, 135303.
科研成果
:
Article
›
同行评审
Ground state
100%
Quantum computers
92%
Quantum Computer
91%
games
82%
quantum computers
80%
3
引用 (Scopus)
Orbitally-resolved ferromagnetism of monolayer CrI
3
Kashin, I. V.
,
Mazurenko, V. V.
,
Katsnelson, M. I.
&
Rudenko, A. N.
,
1 4月 2020
,
在:
2d materials.
7
,
2
,
11 页码
, 025036.
科研成果
:
Article
›
同行评审
Spin Wave
100%
Ferromagnetism
99%
Monolayers
72%
Magnetic Ordering
71%
Spin waves
68%
48
引用 (Scopus)
Orbital response of single-layer antimony to external magnetic field
Pushkarev, G.
,
Iakovlev, I. A.
,
Prishchenko, D. A.
,
Stepanov, E. A.
,
Mazurenko, V. V.
,
Mazurenko, V. G.
&
Rudenko, A. N.
,
12 10月 2020
,
在:
Physical Review B.
102
,
15
,
9 页码
, 155412.
科研成果
:
Article
›
同行评审
Antimony
100%
antimony
77%
Spin orbit coupling
72%
Electrons
69%
Landau Level
65%
Spectral, electrical, magnetic and radiation shielding studies of Mg-doped Ni–Cu–Zn nanoferrites
Henaish, A. M. A.
,
Mostafa, M.
,
Salem, B. I.
,
Zakaly, H. M. H.
,
Issa, S. A. M.
,
Weinstein, I. A.
&
Hemeda, O. M.
,
11月 2020
,
在:
Journal of Materials Science: Materials in Electronics.
31
,
22
,
页码 20210-20222
13 页码
科研成果
:
Article
›
同行评审
Electric Shielding
100%
Magnetic shielding
88%
Radiation shielding
84%
magnetic shielding
71%
Sinusoidal Wave
52%
23
引用 (Scopus)