Evolution of a self-consistent joint system (JS), i.e., a quantum system (QS) + thermal bath (TB), is considered within the framework of the Langevin–Schrödinger (L-Sch) type equation. As a tested QS, we considered two linearly coupled quantum oscillators that interact with TB. The influence of TB on QS is described by the white noise type autocorrelation function. Using the reference differential equation, the original L-Sch equation is reduced to an autonomous form on a random space–time continuum, which reflects the fact of the existence of a hidden symmetry of JS. It is proven that, as a result of JS relaxation, a two-dimensional quantized small environment is formed, which is an integral part of QS. The possibility of constructing quan...
We address the problem of the thermodynamically consistent description of energy transfer in condens...
We show that the quantum statistical mechanics describing quantum and thermal properties of objects ...
We show that the quantum statistical mechanics describing quantum and thermal properties of objects ...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
International audienceThis work brings together thermodynamics and nonequilibrium quantum theory, by...
AbstractWe compute the quantum Langevin equation (or more exactly, the quantum stochastic differenti...
Identifying or constructing a fine-grained microscopic theory that will emerge under specific condit...
Identifying or constructing a fine-grained microscopic theory that will emerge under specific condit...
Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
We address the problem of the thermodynamically consistent description of energy transfer in condens...
We show that the quantum statistical mechanics describing quantum and thermal properties of objects ...
We show that the quantum statistical mechanics describing quantum and thermal properties of objects ...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
We show that the quantum statistical mechanics (QSM) describing quantum and thermal properties of ob...
International audienceThis work brings together thermodynamics and nonequilibrium quantum theory, by...
AbstractWe compute the quantum Langevin equation (or more exactly, the quantum stochastic differenti...
Identifying or constructing a fine-grained microscopic theory that will emerge under specific condit...
Identifying or constructing a fine-grained microscopic theory that will emerge under specific condit...
Quantum Thermodynamics is a novel research field which explores the emergence of thermodynamics from...
Abstract: A new approach to quantum Markov processes is developed and the corresponding Fokker-Planc...
We address the problem of the thermodynamically consistent description of energy transfer in condens...
We show that the quantum statistical mechanics describing quantum and thermal properties of objects ...
We show that the quantum statistical mechanics describing quantum and thermal properties of objects ...