It is shown that the recently proposed quantum analogue of classical energy equipartition theorem for two paradigmatic, exactly solved models (i.e., a free Brownian particle and a dissipative harmonic oscillator) also holds true for all quantum systems which are composed of an arbitrary number of non-interacting or interacting particles, subjected to any confining potentials and coupled to thermostat with arbitrary coupling strength
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
We consider a paradigmatic model of a quantum Brownian particle coupled to a thermostat consisting ...
We reveal a new face of the old clichéd system: a dissipative quantum harmonic oscillator. We formul...
Equipartition theorem is a fundamental law of classical statistical physics which states that every ...
In this brief report, following the recent developments on formulating a quantum analogue of the cla...
We consider a paradigmatic model of a quantum Brownian particle coupled to a thermostat consisting o...
We consider a paradigmatic model of a quantum Brownian particle coupled to a thermostat consisting o...
The problem of mutual equilibration between two finite, identical quantum systems, A and B, prepared...
In classical physics there is a well-known theorem in which it is established that the energy per de...
Recently, the quantum counterpart of energy equipartition theorem has drawn considerable attention. ...
We consider the global thermal state of classical and quantum harmonic oscillators that interact wit...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
We consider a paradigmatic model of a quantum Brownian particle coupled to a thermostat consisting ...
We reveal a new face of the old clichéd system: a dissipative quantum harmonic oscillator. We formul...
Equipartition theorem is a fundamental law of classical statistical physics which states that every ...
In this brief report, following the recent developments on formulating a quantum analogue of the cla...
We consider a paradigmatic model of a quantum Brownian particle coupled to a thermostat consisting o...
We consider a paradigmatic model of a quantum Brownian particle coupled to a thermostat consisting o...
The problem of mutual equilibration between two finite, identical quantum systems, A and B, prepared...
In classical physics there is a well-known theorem in which it is established that the energy per de...
Recently, the quantum counterpart of energy equipartition theorem has drawn considerable attention. ...
We consider the global thermal state of classical and quantum harmonic oscillators that interact wit...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
Since the first suggestion of the Jarzynski equality many derivations of this equality have been pre...