We study particle current in a recently proposed model for coherent quantum transport. In this model, a system connected to mesoscopic Fermi reservoirs (meso-reservoir) is driven out of equilibrium by the action of super-reservoirs thermalized to prescribed temperatures and chemical potentials by a simple dissipative mechanism described by the Lindblad equation. We compare exact (numerical) results with theoretical expectations based on the Landauer formula. © 2012 The Royal Swedish Academy of Sciences
We present an approach to steady-state mesoscopic transport based on the masimum entropy principle f...
Recently, Avron et al. in a series of papers shed new light on the question of quantum transport in ...
A quantum master equation (QME) is derived for the many-body density matrix of an open current-carry...
We study particle current in a recently proposed model for coherent quantum transport. In this model...
We study a model of nonequilibrium quantum transport of particles and energy in a many-body system c...
We present a formalism to study many-particle quantum transport across a lattice locally connected t...
We study transport of fermions in a system composed of a short optical lattice connecting two finite...
A new millennia ushered in novel experimental capabilities to investigate engineered quantum systems...
We study the interplay between charge transport and light-matter interactions in a confined geometry...
Abstract. The general theory of simple transport processes between quantum me-chanical reservoirs is...
We present an approach to steady-state mesoscopic transport based on the maximum entropy principle f...
We show that the dynamics of a driven quantum system weakly coupled to a finite reservoir can be app...
The general theory of simple transport processes between quantum mechanical reservoirs is r...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
We study the transport properties of generic out-of-equilibrium quantum systems connected to fermion...
We present an approach to steady-state mesoscopic transport based on the masimum entropy principle f...
Recently, Avron et al. in a series of papers shed new light on the question of quantum transport in ...
A quantum master equation (QME) is derived for the many-body density matrix of an open current-carry...
We study particle current in a recently proposed model for coherent quantum transport. In this model...
We study a model of nonequilibrium quantum transport of particles and energy in a many-body system c...
We present a formalism to study many-particle quantum transport across a lattice locally connected t...
We study transport of fermions in a system composed of a short optical lattice connecting two finite...
A new millennia ushered in novel experimental capabilities to investigate engineered quantum systems...
We study the interplay between charge transport and light-matter interactions in a confined geometry...
Abstract. The general theory of simple transport processes between quantum me-chanical reservoirs is...
We present an approach to steady-state mesoscopic transport based on the maximum entropy principle f...
We show that the dynamics of a driven quantum system weakly coupled to a finite reservoir can be app...
The general theory of simple transport processes between quantum mechanical reservoirs is r...
We discuss the use of super-fermion formalism to represent and solve quantum kinetic equations for t...
We study the transport properties of generic out-of-equilibrium quantum systems connected to fermion...
We present an approach to steady-state mesoscopic transport based on the masimum entropy principle f...
Recently, Avron et al. in a series of papers shed new light on the question of quantum transport in ...
A quantum master equation (QME) is derived for the many-body density matrix of an open current-carry...