and P. Prelovšek2 Abstract W e discuss the energy current and the energy fluctuations in an isolated quantum wire driven far from equilibrium. The system consists of interacting spinless fermions and is driven by a time–dependent magnetic flux. The energy current is defined by the continuity equation for the energy density which is derived both for homogeneous as well as for inhomogeneous systems. Since the total energy is not conserved in the driven system, the continuity equation includes the source terms which are shown to represent the Joule heating effects. For short times and weak drivings the energy current agrees with the linear response theory. For stronger fields or longer times of driving the system enters the quasiequilibrium r...
We theoretically investigate questions regarding the controlled emission and entanglement of individ...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
We consider the ground state of simple quantum systems coupled to an environment. In general the sys...
We study the transport properties of a long non-uniform quantum wire where the electron–electron int...
We study time-dependent heat transport in systems composed of a resonant level periodically forced w...
We present an overview of recent advances in the study of energy dynamics and mechanisms for energy ...
We consider energy (heat) transport in quantum systems, and establish a relationship between energy ...
We study the energy transfer rate for electrons in two parallel quantum wires due to interwire Coulo...
Recently, there has been a lot of interest in particle and energy currents through nanoscale devices...
The study of the dynamics of strongly confined, interacting open quantum systems has attracted great...
We analyze the time-resolved energy transport and the entropy production in ac-driven quantum cohere...
The problem of time-dependent particle transport in quantum conductors is nowadays a well establishe...
This thesis is concerned with the theoretical study of the transport in small conductors at low temp...
The concept of a quantum heat engine (QHEN) has been discussed in the literature, not only due to it...
We present core ideas of quantum thermodynamics and a simple model of continuous quantum heat engine...
We theoretically investigate questions regarding the controlled emission and entanglement of individ...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
We consider the ground state of simple quantum systems coupled to an environment. In general the sys...
We study the transport properties of a long non-uniform quantum wire where the electron–electron int...
We study time-dependent heat transport in systems composed of a resonant level periodically forced w...
We present an overview of recent advances in the study of energy dynamics and mechanisms for energy ...
We consider energy (heat) transport in quantum systems, and establish a relationship between energy ...
We study the energy transfer rate for electrons in two parallel quantum wires due to interwire Coulo...
Recently, there has been a lot of interest in particle and energy currents through nanoscale devices...
The study of the dynamics of strongly confined, interacting open quantum systems has attracted great...
We analyze the time-resolved energy transport and the entropy production in ac-driven quantum cohere...
The problem of time-dependent particle transport in quantum conductors is nowadays a well establishe...
This thesis is concerned with the theoretical study of the transport in small conductors at low temp...
The concept of a quantum heat engine (QHEN) has been discussed in the literature, not only due to it...
We present core ideas of quantum thermodynamics and a simple model of continuous quantum heat engine...
We theoretically investigate questions regarding the controlled emission and entanglement of individ...
We discuss how various parts of a quantum many-body system exchange energies at thermal equilibrium....
We consider the ground state of simple quantum systems coupled to an environment. In general the sys...