搜尋結果
2019
Wang, J. ,
Guo, Y. ,
Shen, H. ,
Chen, Y. Y. ,
Zhang, R. ,
Zheng, Y. ,
Chen, L. ,
Wang, S. ,
Jia, Y. ,
Chen, H. Y. &
Su, W. S. ,
2019 ,
於: RSC Advances. 9 ,
71 ,
p. 41703-41708 6 p. 研究成果: 雜誌貢獻 › 期刊論文 › 同行評審
Tellurium
100%
Monolayers
79%
Optical properties
75%
Monolayer
45%
Optical Property
44%
2018
Spin density waves
100%
Charge density waves
94%
Spin Density Wave
75%
Charge Density Wave
65%
Superconducting materials
55%
2016
Zhao, Y. ,
Li, B. ,
Li, W. ,
Chen, H. Y. ,
Bassler, K. E. &
Ting, C. S. ,
2016 4月 19 ,
於: Physical Review B. 93 ,
14 , 144510.
研究成果: 雜誌貢獻 › 期刊論文 › 同行評審
Iron-based Superconductors
100%
Superconductor
48%
Impurities
41%
Ions
39%
Orbital
35%
2014
Spin orbit coupling
100%
Landau Level
90%
Spintronics
74%
Monolayers
62%
Optical properties
59%
Fermions
100%
Fermion
88%
Antiferromagnetic
53%
fermions
45%
Iron-based Superconductors
43%
2012
Hubbard model
100%
Electron-electron interactions
52%
anomalies
39%
disorders
37%
Density of State
35%
2011
Hubbard model
100%
Self-Energy
81%
anomalies
39%
disorders
37%
Density of State
35%
2010
Hubbard model
100%
Molecular orbitals
83%
Statistical Ensemble
48%
Molecules
47%
Physics
42%
2008
Zaratiegui García, J. ,
Pietiläinen, P. ,
Chen, H. Y. &
Chakraborty, T. ,
2008 6月 ,
於: Physica E: Low-Dimensional Systems and Nanostructures. 40 ,
8 ,
p. 2839-2843 5 p. 研究成果: 雜誌貢獻 › 期刊論文 › 同行評審
Electronic structure
100%
Quantum Dot
59%
quantum dots
52%
electronics
34%
Electron Spin
28%
Spin orbit coupling
100%
Spin-Orbit Coupling
58%
Magnetic properties
58%
spin-orbit interactions
51%
Orbits
42%
Tunneling Conductance
100%
Resonant Tunneling
94%
Resonant tunneling
92%
Quantum Dots
75%
resonant tunneling
62%
Chen, H. Y. ,
Garcia, J. Z. ,
Chakraborty, T. &
Pietilainen, P. ,
2008 6月 ,
於: Physica E: Low-Dimensional Systems and Nanostructures. 40 ,
8 ,
p. 2834-2838 5 p. 研究成果: 雜誌貢獻 › 期刊論文 › 同行評審
Ground state
100%
Electron energy levels
77%
Electron-electron interactions
71%
Electrons
66%
Electron correlations
64%
2007
Quantum Dots
100%
Graphite
98%
Magnetic Fields
82%
graphene
58%
fermions
58%
2006
Wang, Q. ,
Chen, H. Y. ,
Hu, C. R. &
Ting, C. S. ,
2006 ,
於: Physical Review Letters. 96 ,
11 , 117006.
研究成果: 雜誌貢獻 › 期刊論文 › 同行評審
Superconductivity
100%
sands
64%
Spectrum Analysis
59%
signatures
48%
Magnetic Fields
34%
Quantum Interference
100%
Superconducting materials
94%
Superconductor
81%
Impurities
69%
Tunneling Conductance
67%
2005
Charge density waves
100%
Superconducting materials
58%
Charge Density Wave
51%
Superconductor
50%
Density of State
48%
Tunneling Conductance
100%
Superconductivity
83%
Superconducting materials
70%
Superconductor
60%
cuprates
54%
2004
Lee, S. ,
Won, H. ,
Chen, H. Y. ,
Yuan, Q. ,
Maki, K. &
Thalmeier, P. ,
2004 5月 ,
於: Journal of Magnetism and Magnetic Materials. 272-276 ,
SUPPL. 1 ,
p. e145-e146 研究成果: 雜誌貢獻 › 期刊論文 › 同行評審
Superconductivity
100%
Superconductor
73%
Impurities
62%
Scattering
61%
Superconducting materials
56%
Voo, K. K. ,
Wu, W. C. ,
Chen, H. Y. &
Mou, C. Y. ,
2004 12月 1 ,
於: Physica C: Superconductivity and its applications. 416 ,
3-4 ,
p. 75-84 10 p. 研究成果: 雜誌貢獻 › 期刊論文 › 同行評審
Fermi surface
100%
Scanning tunneling microscopy
79%
Density of State
48%
Scanning Tunneling Microscopy
45%
Fermi surfaces
43%
2003
Scanning tunneling microscopy
100%
Photoelectron spectroscopy
63%
Density of State
60%
Scanning Tunneling Microscopy
57%
scanning tunneling microscopy
54%
Yuan, Q. ,
Chen, H. Y. ,
Ting, S. ,
Won, H. ,
Lee, S. ,
Maki, K. &
Thalmeier, P. ,
2003 11月 10 ,
於: Physical Review B - Condensed Matter and Materials Physics. 68 ,
17 研究成果: 雜誌貢獻 › 期刊論文 › 同行評審
Superconductivity
100%
Superconducting Gap
64%
Impurities
62%
Wave
60%
superconductivity
54%
Charge density waves
100%
Superconductivity
91%
Superconducting materials
78%
Spin density waves
70%
Charge Density Wave
69%
2002
Spin density waves
100%
Spin Density Wave
75%
Charge density waves
71%
High temperature superconductors
62%
Charge Density Wave
49%
Spin density waves
100%
Spin Density Wave
75%
Charge density waves
63%
High temperature superconductors
62%
Superconductor
47%
Fermi liquids
100%
Fermi Liquid
74%
Superconducting materials
51%
Superconductor
44%
Electron Spin
32%