In the context of the problem of heat conduction in one-dimensional systems, we present an analytical calculation of the instantaneous energy transfer across a tagged particle in a one-dimensional gas of equal-mass, hard-point particles. From this, we obtain a formula for the steady-state energy flux, and identify and separate the mechanical work and heat conduction contributions to it. The nature of the Fourier law for the model, and the nonlinear dependence of the rate of mechanical work on the stationary drift velocity of the tagged particle, are analyzed and elucidated
We consider one-dimensional systems of all-to-all harmonically coupled particles with arbitrary mass...
Equilibrium and nonequilibrium studies of a hard point chain are performed under the condition of a ...
We study the statistical mechanics of thermal conduction in a classical many-body system that is in ...
ACKNOWLEDGMENTS L.R. has been partially supported by Ministero dell'Istruzione dell'Università e del...
We study the nonequilibrium state of heat conduction in a one-dimensional system of hard point parti...
We review two well-known definitions present in the literature, which are used to define the heat or...
Using information-theoretical methods, we studied how energy equipartition is broken in one-dimensio...
We study heat transport in a one-dimensional chain of a finite number N of identical cells, coupled ...
Recent results on theoretical studies of heat conduction in low-dimensional systems are presented. T...
Heat and particle transport in a one-dimensional hard-point gas of elastically colliding particles a...
In this paper, we first define a deterministic particle model for heat conduction. It consists of a ...
As a paradigm for heat conduction in 1 dimension, we propose a class of models represented by chains...
The thermomass theory regards heat owning mass-energy duality, exhibiting energy-like features in co...
Heat is transferred along a temperature gradient, from hot to cold, at a rate determined by the ther...
We study heat transport in a one-dimensional chain of a finite number N of identical cells, coupled ...
We consider one-dimensional systems of all-to-all harmonically coupled particles with arbitrary mass...
Equilibrium and nonequilibrium studies of a hard point chain are performed under the condition of a ...
We study the statistical mechanics of thermal conduction in a classical many-body system that is in ...
ACKNOWLEDGMENTS L.R. has been partially supported by Ministero dell'Istruzione dell'Università e del...
We study the nonequilibrium state of heat conduction in a one-dimensional system of hard point parti...
We review two well-known definitions present in the literature, which are used to define the heat or...
Using information-theoretical methods, we studied how energy equipartition is broken in one-dimensio...
We study heat transport in a one-dimensional chain of a finite number N of identical cells, coupled ...
Recent results on theoretical studies of heat conduction in low-dimensional systems are presented. T...
Heat and particle transport in a one-dimensional hard-point gas of elastically colliding particles a...
In this paper, we first define a deterministic particle model for heat conduction. It consists of a ...
As a paradigm for heat conduction in 1 dimension, we propose a class of models represented by chains...
The thermomass theory regards heat owning mass-energy duality, exhibiting energy-like features in co...
Heat is transferred along a temperature gradient, from hot to cold, at a rate determined by the ther...
We study heat transport in a one-dimensional chain of a finite number N of identical cells, coupled ...
We consider one-dimensional systems of all-to-all harmonically coupled particles with arbitrary mass...
Equilibrium and nonequilibrium studies of a hard point chain are performed under the condition of a ...
We study the statistical mechanics of thermal conduction in a classical many-body system that is in ...