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Electronic structure investigation of a charge density wave coupled to a metal-to-metal transition in Ce3Co4Sn13
A. Singh
, H. Y. Huang
, Y. Y. Chin
, Y. F. Liao
, T. C. Huang
, J. Okamoto
, W. B. Wu
, H. J. Lin
, K. D. Tsuei
, R. P. Wang
, F. M.F. De Groot
,
C. N. Kuo
, H. F. Liu
,
C. S. Lue
, C. T. Chen
, D. J. Huang
, A. Chainani
Department of Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Citations (Scopus)
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Dive into the research topics of 'Electronic structure investigation of a charge density wave coupled to a metal-to-metal transition in Ce3Co4Sn13'. Together they form a unique fingerprint.
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Chemistry
Absorption Spectroscopy
100%
Binding Energy
40%
Charge Density Wave
100%
Core Level
40%
Electronic State
100%
Fermi Level
20%
Photoelectron Spectroscopy
40%
Transition Metal
100%
Valence Band
20%
Engineering
Binding Energy
40%
Charge Density
100%
Core Level
40%
Electronic State
100%
Fermi Level
20%
Photoemission
40%
Ray Absorption
100%
Valence Band
20%
Material Science
Absorption Spectroscopy
100%
Density
100%
Photoemission Spectroscopy
40%
Transition Metal
100%
Physics
Absorption Spectroscopy
100%
Binding Energy
40%
Photoelectric Emission
40%
Transition Metal
100%
Earth and Planetary Sciences
Absorption Spectroscopy
100%
Binding Energy
40%
Transition Metal
100%
Keyphrases
Co2P
20%
Kondo Screening
20%
Weak Feature
20%