info:eu-repo/semantics/article
Quantum friction between graphene sheets
Fecha
2017-03-16Registro en:
Farias, María Belén; Fosco, Cesar Daniel; Lombardo, Fernando Cesar; Mazzitelli, Francisco Diego; Quantum friction between graphene sheets; American Physical Society; Physical Review D; 95; 6; 16-3-2017; 1-12; 065012
2470-0010
CONICET Digital
CONICET
Autor
Farias, María Belén
Fosco, Cesar Daniel
Lombardo, Fernando Cesar
Mazzitelli, Francisco Diego
Resumen
We study the Casimir friction phenomenon in a system consisting of two flat, infinite, and parallel graphene sheets, which are coupled to the vacuum electromagnetic (EM) field. Those couplings are implemented, in the description we use, by means of specific terms in the effective action for the EM field. They incorporate the distinctive properties of graphene, as well as the relative sliding motion of the sheets. Based on this description, we evaluate two observables due to the same physical effect: the probability of vacuum decay and the frictional force. The system exhibits a threshold for frictional effects; namely, they only exist if the speed of the sliding motion is larger than the Fermi velocity of the charge carriers in graphene.