The concept of temperature in nonequilibrium thermodynamics is an outstanding theoretical issue. We propose an energy repartition principle that leads to a spectral (mode-dependent) temperature in steady-state nonequilibrium systems. The general concepts are illustrated by analytic solutions of the classical Heisenberg spin chain connected to Langevin heat reservoirs with arbitrary temperature profiles. Gradients of external magnetic fields are shown to localize spin waves in a Wannier-Zeemann fashion, while magnon interactions renormalize the spectral temperature. Our generic results are applicable to other thermodynamic systems such as Newtonian liquids, elastic solids, and Josephson junctions.</p
We review the general aspects of the concept of temperature in equilibrium and non- equilibrium sta...
In traditional thermodynamics, temperature is a local quantity: a subsystem of a large thermal syste...
The role of two different definitions of temperature in nonequilibrium steady states (a kinetic one ...
The concept of temperature in nonequilibrium thermodynamics is an outstanding theoretical issue. We ...
We exactly analyze the vibrational properties of a chain of harmonic oscillators in contact with loc...
16 pages, 2 figures, submitted to Phys. Rev. EWe study a class of non-equilibrium lattice models des...
Quasiequilibrium states of the spin system in a solid are described in terms of one "Zeeman" tempera...
4 pages, 1 figure, final versionWe study a class of nonequilibrium lattice models which describe loc...
We combine the definition of temperature for an Hamiltonian dynamical system, with the Hamiltonian r...
International audienceMany-body nonequilibrium steady states can be described by a Landau-Ginzburg t...
A generalized definition of temperature, which holds both for equilibrium and nonequilibrium states,...
The equilibrium and nonequilibrium properties of an assembly of interacting spins are analyzed in th...
Understanding how small systems exchange energy with a heat bath is important to describe how their ...
We study the energy transport between two interacting spin chains which are initially separated, hel...
We analyze the nonequilibrium steady states (NESS) of a one-dimensional harmonic chain of N atoms wi...
We review the general aspects of the concept of temperature in equilibrium and non- equilibrium sta...
In traditional thermodynamics, temperature is a local quantity: a subsystem of a large thermal syste...
The role of two different definitions of temperature in nonequilibrium steady states (a kinetic one ...
The concept of temperature in nonequilibrium thermodynamics is an outstanding theoretical issue. We ...
We exactly analyze the vibrational properties of a chain of harmonic oscillators in contact with loc...
16 pages, 2 figures, submitted to Phys. Rev. EWe study a class of non-equilibrium lattice models des...
Quasiequilibrium states of the spin system in a solid are described in terms of one "Zeeman" tempera...
4 pages, 1 figure, final versionWe study a class of nonequilibrium lattice models which describe loc...
We combine the definition of temperature for an Hamiltonian dynamical system, with the Hamiltonian r...
International audienceMany-body nonequilibrium steady states can be described by a Landau-Ginzburg t...
A generalized definition of temperature, which holds both for equilibrium and nonequilibrium states,...
The equilibrium and nonequilibrium properties of an assembly of interacting spins are analyzed in th...
Understanding how small systems exchange energy with a heat bath is important to describe how their ...
We study the energy transport between two interacting spin chains which are initially separated, hel...
We analyze the nonequilibrium steady states (NESS) of a one-dimensional harmonic chain of N atoms wi...
We review the general aspects of the concept of temperature in equilibrium and non- equilibrium sta...
In traditional thermodynamics, temperature is a local quantity: a subsystem of a large thermal syste...
The role of two different definitions of temperature in nonequilibrium steady states (a kinetic one ...