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Exciton-phonon coupling and band-gap renormalization in monolayer WSe2
Himani Mishra
, Anindya Bose
, Amit Dhar
, Sitangshu Bhattacharya
Research output
:
Contribution to journal
›
Article
›
peer-review
42
Scopus citations
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Dive into the research topics of 'Exciton-phonon coupling and band-gap renormalization in monolayer WSe2'. Together they form a unique fingerprint.
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Keyphrases
Exciton
100%
Phonon Band
100%
Exciton-phonon Coupling
100%
Monolayer WS2
100%
Coupling Gap
100%
Bandgap Renormalization
100%
Non-radial
66%
Excitonic Peaks
66%
Technology-based
33%
Band Gap
33%
Increased Temperature
33%
Temperature Rise
33%
Absorption Spectra
33%
Electron Holes
33%
Electronic Energy
33%
Lattice Anharmonicity
33%
Finite Temperature
33%
Zero Temperature
33%
Acoustic Phonons
33%
Electron-phonon Interaction
33%
Lattice Vibration
33%
Optical Absorption
33%
Zero-point Energy
33%
Lattice Thermal Expansion
33%
Device Technology
33%
Phonon Interaction
33%
Excited State Energies
33%
Bethe-Salpeter Equation
33%
Many-body Perturbation Theory
33%
Energy Renormalization
33%
Renormalization
33%
Polaronic Energy
33%
Optical Gap
33%
Kohn-Sham Equation
33%
Exciton Lifetime
33%
Neutral Exciton
33%
G0W0
33%
B Exciton
33%
Anharmonic Lattice
33%
Chemistry
Phonon
100%
Monolayer
100%
Band Gap
100%
Exciton
100%
electronics
33%
Absorption Spectra
16%
Excited State
16%
Hole (Electron)
16%
Anharmonicity
16%
Thermal Expansion
16%
Optoelectronics
16%
Zero-Temperature
16%
Finite-Temperature
16%
Zero Point Energy
16%
Linewidth
16%
Acoustic Phonon
16%
Electron-Phonon Interaction
16%
Many-Body Perturbation Theory
16%
Physics
Phonon
100%
Exciton
100%
Perturbation Theory
16%
Holes (Electron Deficiencies)
16%
Thermal Expansion
16%
Finite-Temperature
16%
Zero-Temperature
16%
Lattice Vibration
16%
Linewidth
16%
Electron Phonon Interactions
16%
Absorption Spectra
16%
Bethe-Salpeter Equation
16%
Zero Point Energy
16%
Optoelectronic Device
16%
Material Science
Monolayer
100%
Thermal Expansion
33%
Absorption Spectra
33%
Lattice Vibration
33%
Linewidth
33%