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Strong exciton regulation of Raman scattering in monolayer MoS2
Yuanxi Wang
, Bruno R. Carvalho
,
Vincent H. Crespi
Materials Research Institute (MRI)
Physics
Research output
:
Contribution to journal
›
Article
›
peer-review
20
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Dive into the research topics of 'Strong exciton regulation of Raman scattering in monolayer MoS2'. Together they form a unique fingerprint.
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Keyphrases
Resonance Raman
100%
Exciton
100%
Raman Scattering
100%
Monolayer MoS2
100%
Raman Response
40%
Excitonic Effects
40%
High Energy
20%
Molybdenite
20%
First-principles
20%
Frequency Dependence
20%
Excitation Spectrum
20%
Optical Absorption
20%
Scattering Amplitudes
20%
Excitation Energy
20%
Material Response
20%
Energy Function
20%
Scattering Processes
20%
Wave Function
20%
High-order
20%
Band Edge
20%
Conduction Band
20%
Raman Modes
20%
Electron-hole Pair
20%
Valence Band
20%
Raman Intensity
20%
Downshifting
20%
Quasiparticles
20%
Strong Signals
20%
Raman Measurements
20%
Perturbative Approach
20%
Raman Process
20%
Excitation Wave
20%
One-for-All
20%
Semiconductor Thin Films
20%
Chemistry
Exciton
100%
Monolayers
100%
Raman Spectra
100%
Molybdenum Disulfide
100%
First Principle
25%
Quasiparticle
25%
Conduction Band
25%
Valence Band
25%
Raman Intensity
25%
Hole (Electron)
25%
Perturbative Approach
25%
Wave Function
25%
Phonon
25%
Absorptivity
25%
Physics
Raman Spectra
100%
Exciton
100%
Scattering Amplitude
25%
Wave Function
25%
Electromagnetic Absorption
25%
First Principle
25%
Holes (Electron Deficiencies)
25%
Conduction Band
25%
Quasiparticle
25%
Phonon
25%
Material Science
Monolayers
100%