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查看斯高帕斯 (Scopus) 概要
王 康隆
Distinguished Visiting Chair Professor
電機資訊學院
電話
886 6 2757575 ext 34001
電子郵件
klwang
g.ucla
edu
h-index
44268
引文
101
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
1972 …
2023
每年研究成果
概覽
指紋
網路
研究成果
(1145)
類似的個人檔案
(8)
如果您對這些純文本內容做了任何改變,很快就會看到。
指紋
查看啟用 Kang-Lung Wang 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
排序方式
重量
按字母排序
Engineering & Materials Science
Annealing
26%
Boron
17%
Buffer layers
17%
Crystalline materials
17%
Data storage equipment
41%
Deep level transient spectroscopy
15%
Defects
21%
Doping (additives)
27%
Electric fields
31%
Electric potential
31%
Electrons
22%
Epitaxial growth
34%
Ferromagnetism
24%
Gas source molecular beam epitaxy
20%
Graphene nanoribbon
15%
Heterojunctions
57%
Magnetic anisotropy
47%
Magnetic fields
18%
Magnetization
34%
Molecular beam epitaxy
100%
Monolayers
19%
Nanoelectronics
18%
Nanostructures
24%
Nanowires
32%
Optical properties
16%
Orbits
27%
Phonons
36%
Photoluminescence
32%
Quantum confinement
15%
Quantum Hall effect
22%
Semiconductor quantum wells
77%
Semiconductor quantum wires
16%
Silicon
46%
Spectroscopy
17%
Spin Hall effect
16%
Spin waves
54%
Spintronics
76%
Substrates
51%
Superlattices
80%
Surface states
19%
Temperature
42%
Thermal conductivity
23%
Thin films
38%
Topological insulators
91%
Torque
36%
Transistors
28%
Transmission electron microscopy
15%
Chemical Compounds
Acoustic Phonon
9%
Ambient Reaction Temperature
16%
Annealing
20%
Boron Atom
10%
Compound Mobility
16%
Dissipation
14%
Electric Field
21%
Electron Particle
11%
Electron Spin
41%
Energy
23%
Epitaxial Growth
24%
Ferromagnetism
18%
Field Effect
15%
Graphene
16%
Hall Effect
33%
Heavy Metal
9%
Interface State
9%
Liquid Film
20%
Magnetic Anisotropy
33%
Magnetic Field
24%
Magnetic Property
9%
Magnetization
24%
Magnetoresistance
10%
Molecular Beam Epitaxy
75%
Monolayer
11%
Nanomaterial
13%
Nanoribbon
10%
Nanowire
21%
Nonconductor
70%
Phonon
13%
Photoluminescence
11%
Quantum Dot
44%
Resistance
11%
Resonant Tunneling
16%
Semiconductor
24%
Simulation
9%
Skyrmion
28%
Spin Wave
29%
Spintronics
65%
Superlattice
45%
Surface
12%
Surface State
18%
Thermal Conductivity
14%
Thermoelectricity
15%
Time
10%
Torque
51%
Tunneling
20%
Voltage
21%
Physics & Astronomy
anisotropy
32%
annealing
23%
augmentation
11%
boron
15%
buffers
17%
carbon nanotubes
10%
characterization
11%
defects
19%
domain wall
9%
electric fields
24%
electric potential
29%
electronics
15%
electrons
13%
energy
13%
ferromagnetism
12%
field effect transistors
21%
graphene
26%
Hall effect
24%
heavy metals
18%
infrared detectors
11%
insulators
53%
logic
12%
magnetic fields
15%
magnetization
25%
magnons
21%
metal oxide semiconductors
11%
metals
10%
molecular beam epitaxy
55%
nanowires
16%
optical properties
11%
orbits
32%
oxides
11%
phonons
16%
photoluminescence
21%
photometers
10%
quantum dots
45%
quantum wells
51%
resonant tunneling
13%
room temperature
17%
silicon
29%
solar cells
10%
spectroscopy
13%
superlattices
43%
temperature
17%
thermal conductivity
12%
thin films
30%
torque
50%
transistors
17%
tunnel junctions
27%
x rays
9%