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乌拉尔联邦大学的研究网站 国内
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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
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搜索该项目所涉及的研究主题。这些标签是基于奖励/奖项生成的。它们共同形成唯一的指纹。
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Технические дисциплины и материаловедение
Absorption spectra
24%
Aging of materials
5%
Antimony
73%
Atoms
17%
Autonomous agents
20%
Bias voltage
52%
Boron
14%
Chromium
17%
Communication
8%
Computer systems
14%
Crystals
16%
Curie temperature
79%
Debye temperature
12%
Defects
11%
Derivatives
20%
Dimers
25%
Electric fields
23%
Electric potential
13%
Electronic properties
39%
Electrons
82%
Exchange coupling
46%
Exchange interactions
61%
Experiments
12%
Ferrite
16%
Ferromagnetism
90%
Free energy
30%
Ground state
76%
Hamiltonians
90%
Liquids
33%
Machine learning
12%
Magnetic fields
44%
Magnetic permeability
24%
Magnetic shielding
81%
Magnetic susceptibility
81%
Magnetism
24%
Magnetization
100%
Magnetostriction
37%
Magnets
17%
Materials science
20%
Modulation
19%
Momentum
15%
Monolayers
66%
Neural networks
30%
Particle size
15%
Phonons
79%
Quantum computers
70%
Radiation shielding
77%
Reinforcement learning
16%
Specific heat
53%
Spin orbit coupling
52%
Spin waves
62%
Superconducting materials
66%
Superconducting transition temperature
6%
Superconductivity
19%
Temperature
40%
Thermal expansion
25%
Transmission electron microscopy
34%
X rays
15%
Химические соединения
Application
15%
Atomic Number
31%
Bias Potential
36%
Black
30%
Boron Atom
29%
Chromium Halide
51%
Curie Temperature
91%
Debye Temperature
25%
Diamagnetic
26%
Electric Shielding
91%
Electron Particle
13%
Electronic Property
20%
Energy
23%
Exchange Interaction
57%
Ferromagnetism
63%
Gibbs Free Energy
19%
Heat
18%
Heat Capacity
25%
Landau Level
48%
Magnetic Field
47%
Magnetic Ordering
65%
Magnetic Permeability
41%
Magnetization
47%
Magnetostriction
40%
Monolayer
37%
Monte Carlo Method
26%
Orbital
83%
Phonon
56%
Pressure
9%
Reaction Yield
10%
Resistance
10%
Resonance
20%
Shape
11%
Sinusoidal Wave
47%
Spin Hamiltonian
32%
Spin Splitting
44%
Spin Wave
91%
Spin-Orbit Coupling
30%
Strength
10%
Superconductive Transition Temperature
24%
Superconductivity
39%
Superconductor
56%
Thermal Expansion
26%
Tight Binding Model
33%
Transmission Electron Microscopy
33%
Voltage
54%
X-Ray
15%
Физика и астрономия
absorption spectra
6%
annealing
30%
antimony
56%
atoms
8%
attenuation coefficients
9%
boron
10%
broken symmetry
14%
chromium
15%
communication
6%
contaminants
26%
critical temperature
14%
Curie temperature
38%
decay
14%
dimers
7%
dioxides
54%
direct current
6%
electric fields
9%
electric potential
27%
electrical resistivity
5%
electrolytes
20%
electronics
8%
electrons
27%
energy
7%
energy spectra
14%
estimates
19%
ferrites
7%
ferromagnetism
49%
flash
8%
foils
22%
free energy
20%
games
62%
ground state
16%
halides
18%
interactions
13%
inversions
13%
iron
36%
learning
9%
liquids
26%
machine learning
10%
magnetic fields
25%
magnetic permeability
49%
magnetic shielding
65%
magnetization
33%
magnetostriction
27%
magnets
13%
magnons
33%
materials science
9%
mean free path
8%
modulation
11%
momentum
11%
nanotubes
48%
orbitals
59%
orbits
12%
phenomenology
6%
phonons
34%
photoluminescence
35%
plateaus
47%
quantum computation
8%
quantum computers
61%
recharging
37%
reinforcement
8%
room temperature
10%
simulation
9%
specific heat
57%
spinel
8%
statistical distributions
27%
sum rules
8%
superconductivity
39%
symmetry
29%
temperature
19%
temperature ratio
21%
thermal expansion
21%
transition temperature
5%
transmission electron microscopy
11%