8 pages, 4 figuresInternational audienceWe investigate the long-wavelength dispersion of longitudinal and transverse optical phonon modes in polar two-dimensional materials, multilayers, and their heterostructures. Using analytical models and density-functional perturbation theory in a two-dimensional framework, we show that, at variance with the three-dimensional case, these modes are degenerate at the zone center but the macroscopic electric field associated with the longitudinal-optical modes gives rise to a finite slope at the zone center in their corresponding phonon dispersions. This slope increases linearly with the number of layers and it is determined solely by the Born effective charges of the material and the dielectric propertie...
Employing a phenomenological long-wavelength approach recently developed, both acoustic and optical ...
Abstract Dimensionality provides a clear fingerprint on the dispersion of infrared-active, polar-opt...
Since graphene and related hexagonal monolayers (BN, MoS2) are atomically thin 2D materials, their p...
We investigate the long-wavelength dispersion of longitudinal and transverse optical phonon modes in...
We investigate the long-wavelength dispersion of longitudinal and transverse optical phonon modes in...
We investigate the long-wavelength dispersion of longitudinal and transverse optical phonon modes in...
Extreme confinement of electromagnetic energy by phonon polaritons holds the promise of strong and n...
The long-wavelength behavior of vibrational modes plays a central role in carrier transport, phonon-...
A general three-dimensional continuum model of phonons in two-dimensional materials is developed. Ou...
The long-wavelength behavior of vibrational modes plays a central role in carrier transport, phonon-...
International audienceWe study the superradiance of optical phonons during the two- to three-dimensi...
We investigate the electron-phonon interaction in a polar-polar single heterostructure through the u...
We investigate the electron-phonon interaction in a polar-polar single heterostructure through the u...
We investigate the electron-phonon interaction in a polar-polar single heterostructure through the u...
We investigate the electron-phonon interaction in a polar-polar single heterostructure through the u...
Employing a phenomenological long-wavelength approach recently developed, both acoustic and optical ...
Abstract Dimensionality provides a clear fingerprint on the dispersion of infrared-active, polar-opt...
Since graphene and related hexagonal monolayers (BN, MoS2) are atomically thin 2D materials, their p...
We investigate the long-wavelength dispersion of longitudinal and transverse optical phonon modes in...
We investigate the long-wavelength dispersion of longitudinal and transverse optical phonon modes in...
We investigate the long-wavelength dispersion of longitudinal and transverse optical phonon modes in...
Extreme confinement of electromagnetic energy by phonon polaritons holds the promise of strong and n...
The long-wavelength behavior of vibrational modes plays a central role in carrier transport, phonon-...
A general three-dimensional continuum model of phonons in two-dimensional materials is developed. Ou...
The long-wavelength behavior of vibrational modes plays a central role in carrier transport, phonon-...
International audienceWe study the superradiance of optical phonons during the two- to three-dimensi...
We investigate the electron-phonon interaction in a polar-polar single heterostructure through the u...
We investigate the electron-phonon interaction in a polar-polar single heterostructure through the u...
We investigate the electron-phonon interaction in a polar-polar single heterostructure through the u...
We investigate the electron-phonon interaction in a polar-polar single heterostructure through the u...
Employing a phenomenological long-wavelength approach recently developed, both acoustic and optical ...
Abstract Dimensionality provides a clear fingerprint on the dispersion of infrared-active, polar-opt...
Since graphene and related hexagonal monolayers (BN, MoS2) are atomically thin 2D materials, their p...