We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at temperature $T_\ell$ and $T_r$ at sites 1 and $N$ respectively. The oscillators are also subjected to non-momentum conserving bulk stochastic noises. These make the heat conductivity satisfy Fourier's law. Here we describe some new results about the hydrodynamical equations for typical macroscopic energy and displacement profiles, as well as their fluctuations and large deviations, in two simple models of this type.Peer reviewe
Extended from a talk given at a workshop in the Nordita program "Foundations and Applications of Non...
In this note, I summarise and comment on joint work with C. Bernardin, V. Kannan and J. L. Lebowitz ...
Reproducing Fourier's law of heat conduction from a microscopic stochastic model is a long standing ...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
Abstract. We consider a harmonic chain in contact with thermal reser-voirs at different temperatures...
Extended from a talk given at a workshop in the Nordita program "Foundations and Applications of Non...
In this note, I summarise and comment on joint work with C. Bernardin, V. Kannan and J. L. Lebowitz ...
Reproducing Fourier's law of heat conduction from a microscopic stochastic model is a long standing ...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a chain composed of $N$ coupled harmonic oscillators in contact with heat baths at tempe...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
We consider a harmonic chain in contact with thermal reservoirs at different temperatures and subjec...
Abstract. We consider a harmonic chain in contact with thermal reser-voirs at different temperatures...
Extended from a talk given at a workshop in the Nordita program "Foundations and Applications of Non...
In this note, I summarise and comment on joint work with C. Bernardin, V. Kannan and J. L. Lebowitz ...
Reproducing Fourier's law of heat conduction from a microscopic stochastic model is a long standing ...