IFIBA   22255
INSTITUTO DE FISICA DE BUENOS AIRES
Unidad Ejecutora - UE
artículos
Título:
Nonequilibrium Green's functions in the study of heat transport of driven nanomechanical systems
Autor/es:
RIZZO, BRUNO; ARRACHEA, L.
Revista:
Journal of Physics: Conference series
Editorial:
IOP
Referencias:
Año: 2013 vol. 427 p. 12012 - 12022
ISSN:
1742-6596
Resumen:
We review a recent theoretical development based on non-equilibrium Green's function formalism to study heat transport in nanomechanical devices modeled by phononic systems of coupled quantum oscillators driven by ac forces and connected to phononic reservoirs. We present the relevant equations to calculate the heat currents flowing along different regions of the setup, as well as the power developed by the time-dependent forces. We also present different strategies to evaluate the Green's functions exactly or approximately within the weak driving regime. We finally discuss the different mechanisms in which the ac driving forces deliver the energy. We show that, besides generating heat, the forces may operate exchanging energy as a quantum engine.