We present a fluctuation-dissipation theorem (FDT) for nonequilibrium quantum systems with detailed-balance breaking, which deviates from the conventional form of the FDT for equilibrium systems preserving detailed balance. Using the phase space formulation of quantum mechanics and the potential-flux landscape framework, we find that the response function of nonequilibrium quantum systems to external perturbations contains a nontrivial contribution from the quantum curl flux quantifying detailed-balance breaking in the steady state, in addition to the correlation function of observables in the steady state representing the contribution of spontaneous fluctuations which is also present in the equilibrium FDT. We illustrate our general formal...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
Abstract We formulate exact generalized nonequilibrium fluctuation relations for the quantum mechan...
Two fundamental ingredients play a decisive role in the foundation of fluctuation relations: the pri...
In equilibrium, the fluctuation-dissipation theorem (FDT) expresses the response of an observable to...
The fluctuation-dissipation (FD) theorem is a fundamental result for systems near thermodynamic equi...
[eng] We derive a general fluctuation theorem for quantum maps. The theorem applies to a broad class...
18 TeX pages, 1 Postscript figureA time-domain formulation of the equilibrium quantum fluctuation-di...
The driving force of the dynamical system can be decomposed into the gradient of a potential landsca...
The fluctuation-dissipation relation is usually formulated for a system interacting with a heat bath...
Fluctuation theorems (FTs), which describe some universal properties of nonequilibrium fluctuations,...
© 2015 American Physical Society. We derive a general fluctuation theorem for quantum maps. The theo...
Systems that are driven out of thermal equilibrium typically dissipate random quantities of energy o...
We study the validity of the fluctuation-dissipation theorem for an isolated quantum system of harmo...
We study the validity of the fluctuation-dissipation theorem for an isolated quantum system of harmo...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
Abstract We formulate exact generalized nonequilibrium fluctuation relations for the quantum mechan...
Two fundamental ingredients play a decisive role in the foundation of fluctuation relations: the pri...
In equilibrium, the fluctuation-dissipation theorem (FDT) expresses the response of an observable to...
The fluctuation-dissipation (FD) theorem is a fundamental result for systems near thermodynamic equi...
[eng] We derive a general fluctuation theorem for quantum maps. The theorem applies to a broad class...
18 TeX pages, 1 Postscript figureA time-domain formulation of the equilibrium quantum fluctuation-di...
The driving force of the dynamical system can be decomposed into the gradient of a potential landsca...
The fluctuation-dissipation relation is usually formulated for a system interacting with a heat bath...
Fluctuation theorems (FTs), which describe some universal properties of nonequilibrium fluctuations,...
© 2015 American Physical Society. We derive a general fluctuation theorem for quantum maps. The theo...
Systems that are driven out of thermal equilibrium typically dissipate random quantities of energy o...
We study the validity of the fluctuation-dissipation theorem for an isolated quantum system of harmo...
We study the validity of the fluctuation-dissipation theorem for an isolated quantum system of harmo...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
We analyze the production of entropy along nonequilibrium processes in quantum systems coupled to ge...
Abstract We formulate exact generalized nonequilibrium fluctuation relations for the quantum mechan...
Two fundamental ingredients play a decisive role in the foundation of fluctuation relations: the pri...