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刘 贵斌
物理学院
h-index
10097
引用
30
H-指数
根据储存在 Pure 的刊物以及来自 Scopus 的引用文献数量计算
2008
2024
每年的科研成果
概览
指纹图谱
合作网络
科研成果
(61)
相似学者
(8)
指纹图谱
深入其中 Guibin Liu 为活跃的研究主题。这些主题标签来自此人的成果。它们共同形成唯一的指纹。
分类
加权
按字母排序
Physics
Transition Metal Dichalcogenide
100%
Exciton
42%
Physics
36%
Spin-Orbit Coupling
36%
First Principle
33%
First-Principles
31%
Condensed Matter Physics
29%
Electric Fields
29%
Electronic Structure
28%
Photoelectric Emission
27%
Quantum Dot
27%
Magnetic Material
26%
Magnetic Moment
25%
Spintronics
24%
Anisotropy
22%
Graphene
19%
Quasiparticle
19%
Conduction Band
19%
Photoluminescence
18%
Degree of Freedom
16%
Energy Band
13%
Monte Carlo
13%
Superlattice
11%
Topological Insulator
11%
Brillouin Zone
11%
Superconductivity
11%
Broken Symmetry
9%
Magnetic Field
9%
Optical Properties
9%
Monte Carlo Simulation
9%
Ferromagnetism
8%
Ferroelectric Material
8%
Thin Films
8%
Quantum Wire
8%
Second Harmonic Generation
8%
Stoichiometry
8%
Spin Glass
8%
Single Crystal
8%
Artificial Gravity
8%
Optical Control
8%
Phonon
8%
Nanophotonics
8%
Light Emission
8%
Crystal Structure
8%
Phase Effect
8%
Magnetic Properties
8%
Transport Property
8%
Photonics
8%
Ferromagnetic Material
8%
Stacking
8%
Material Science
Transition Metal Dichalcogenide
95%
Monolayers
87%
Ferromagnetism
31%
Physical Property
29%
Electronic Property
20%
Density
20%
Two-Dimensional Material
19%
Graphene
19%
Anisotropy
17%
Magnetic Material
17%
Thin Films
17%
Mechanical Strength
17%
Electronic Structure
16%
Transition Metal
15%
Superconductivity
15%
Thermoelectrics
13%
Magnetic Property
11%
Curie Temperature
11%
Photoluminescence
11%
Optical Property
8%
Magnetism
8%
Mechanical Property
8%
Quantum Dot
8%
Electronic Band Structure
8%
Glass Transition
8%
Manganese
8%
Functional Modeling
8%
Superconducting Material
8%
Ferromagnetic Material
8%
Elastic Constant
8%
Electron Transfer
8%
Copernicium
8%
Ferroelectric Material
8%
Chalcogenides
8%
Metal Chalcogenides
8%
Theoretical Modeling
8%
Tungsten
8%
Waveguide
8%
Diluted Magnetic Semiconductor
8%
First Principle Simulation
8%
Ferrimagnetic Material
8%
Chirality
7%
Transition Metal Chalcogenides
6%
Spin Glass
5%
Dephasing
5%
Engineering
Transition Metal Dichalcogenide
17%
Degree of Freedom
17%
Two Dimensional
13%
Monolayer
11%
Couplings
9%
Photonics
8%
Multichannel
8%
Greens Function Model
8%
Energy Gap
8%
Saddle Point
8%
Nodal Line
8%
Interlayer
8%
Quantum Well
8%
Band Gap Energy
8%
Surface State
8%
Heisenberg Box
8%
Optical Cavity
8%
Energy Engineering
8%
Quantum Gate
8%
Selection Rule
7%
Waveguide
5%
Coupling Strength
5%
Electric Field
5%