We investigate the emergence of temperature T in the system-plus-reservoir paradigm starting from the fundamental microcanonical scenario at total fixed energy E where, contrary to the canonical approach, T=T(E) is not a control parameter but a derived auxiliary concept. As shown by Schwinger for the regime of weak coupling γ between system and environment, T(E) emerges from the saddle-point analysis that leads to the usual ensemble equivalence in the thermodynamic limit. By extending these ideas for finite γ, we provide a consistent generalization of temperature T(E,γ) in strongly coupled systems and we illustrate its main features for the specific model of Quantum Brownian Motion where it leads to consistent microcanonical thermodynamics....
We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to an infini...
We develop a general theory describing the thermodynamical behavior of open quantum systems coupled ...
We consider a quantum particle coupled (with strength λ) to a spatial array of independent non-inter...
We investigate the emergence of temperature T in the system-plus-reservoir paradigm starting from th...
We investigate the emergence of temperature T in the system-plus-reservoir paradigm starting from th...
Quantum systems strongly coupled to many-body systems equilibrate to the reduced state of a global t...
We propose a method to study the thermodynamic behaviour of small systems beyond the weak coupling a...
Thermodynamics typically concerns the physical behaviour of macroscopic systems comprised of many pa...
Contrary to the conventional wisdom that deviations from standard thermodynamics originate from the ...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
ArticleThis is the author accepted manuscript. The final version is available from American Physical...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
We introduce three new principles: the nonlinear Boltzmann-Gibbs prescription, the local KMS conditi...
It is known that one can characterize the decoherence strength of a Markovian environments by the pr...
We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to an infini...
We develop a general theory describing the thermodynamical behavior of open quantum systems coupled ...
We consider a quantum particle coupled (with strength λ) to a spatial array of independent non-inter...
We investigate the emergence of temperature T in the system-plus-reservoir paradigm starting from th...
We investigate the emergence of temperature T in the system-plus-reservoir paradigm starting from th...
Quantum systems strongly coupled to many-body systems equilibrate to the reduced state of a global t...
We propose a method to study the thermodynamic behaviour of small systems beyond the weak coupling a...
Thermodynamics typically concerns the physical behaviour of macroscopic systems comprised of many pa...
Contrary to the conventional wisdom that deviations from standard thermodynamics originate from the ...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
ArticleThis is the author accepted manuscript. The final version is available from American Physical...
The ideas in this thesis are placed broadly within the context of many-body quantum dynamics, an ar...
A quantum microcanonical postulate is proposed as a basis for the equilibrium properties of small qu...
We introduce three new principles: the nonlinear Boltzmann-Gibbs prescription, the local KMS conditi...
It is known that one can characterize the decoherence strength of a Markovian environments by the pr...
We study a microscopic Hamiltonian model describing an N-level quantum system S coupled to an infini...
We develop a general theory describing the thermodynamical behavior of open quantum systems coupled ...
We consider a quantum particle coupled (with strength λ) to a spatial array of independent non-inter...