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Fermi surface investigation in the scanning tunneling microscopy of Bi
2
Sr
2
CaCu
2
O
8
K. K. Voo
*
,
W. C. Wu
,
H. Y. Chen
, C. Y. Mou
*
Corresponding author for this work
Department of Physics
Research output
:
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›
peer-review
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Dive into the research topics of 'Fermi surface investigation in the scanning tunneling microscopy of Bi
2
Sr
2
CaCu
2
O
8
'. Together they form a unique fingerprint.
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INIS
investigations
100%
scanning tunneling microscopy
100%
spectra
100%
density of states
100%
d waves
100%
fermi surface
100%
space
66%
scattering
66%
information
33%
distribution
33%
size
33%
symmetry
33%
voltage
33%
modulation
33%
peaks
33%
impurities
33%
quasi particles
33%
superconductors
33%
fermi liquid
33%
Physics
Density of States
100%
Fermi Surface
100%
Scanning Tunneling Microscopy
100%
Quasiparticle
33%
Fermi Liquid
33%
Finite-Temperature
33%
Material Science
Density
100%
Scanning Tunneling Microscopy
100%
Surface (Surface Science)
100%
Superconducting Material
33%
Fermi Liquid
33%
Engineering
Distribution Factor
50%
Earth and Planetary Sciences
Fermi Liquid
50%