We present calculations for the relaxation rates of phonons in one-dimensional chains in which atoms interact with a class of pairwise potentials which are anharmonic with odd powers. The calculations are based on a self-consistent procedure for second order processes and lead to integral equations for the wave-vector-dependent on-shell relaxation rate Γq for phonons. For the cubic anharmonicity, one finds that for small q, Γq∝q3/2. The self-consistent procedure is extended to potentials with higher odd powers and one finds that the leading order behavior is still Γq∝q3/2+O(q2). With the assumption that the transport relaxation rate has the same wave-vector dependence, this result implies that the thermal conducti...
Reproducing Fourier's law of heat conduction from a microscopic stochastic model is a long standing ...
We study the thermal conductivity, at fixed positive temperature, of a disordered lattice of harmoni...
We study heat conduction in a one-dimensional disordered anharmonic chain with arbitrary heat bath b...
We study phonon relaxation in chains of particles coupled through polynomial-type pair-interaction p...
In this paper, we study the thermal conductivity of an anharmonically coupled chain of atoms. Numeri...
We study thermal transport in a chain of coupled atoms, which can vibrate in longitudinal as well as...
Harnessing the power of low-dimensional materials in thermal applications calls for a solid understa...
International audienceHarnessing the power of low-dimensional materials in thermal applications call...
International audienceHarnessing the power of low-dimensional materials in thermal applications call...
International audienceHarnessing the power of low-dimensional materials in thermal applications call...
In solids and molecules, atoms vibrate about their respective equilibrium positions at finite temper...
Modeling thermal transport through interfaces has been one of the most challenging problems in nanos...
One-dimensional particle chains are fundamental models to explain anomalous thermal conduction in lo...
For thermal transport in one-dimensional (1D) systems, recent studies have suggested that employing ...
One-dimensional particle chains are fundamental models to explain anomalous thermal conduction in lo...
Reproducing Fourier's law of heat conduction from a microscopic stochastic model is a long standing ...
We study the thermal conductivity, at fixed positive temperature, of a disordered lattice of harmoni...
We study heat conduction in a one-dimensional disordered anharmonic chain with arbitrary heat bath b...
We study phonon relaxation in chains of particles coupled through polynomial-type pair-interaction p...
In this paper, we study the thermal conductivity of an anharmonically coupled chain of atoms. Numeri...
We study thermal transport in a chain of coupled atoms, which can vibrate in longitudinal as well as...
Harnessing the power of low-dimensional materials in thermal applications calls for a solid understa...
International audienceHarnessing the power of low-dimensional materials in thermal applications call...
International audienceHarnessing the power of low-dimensional materials in thermal applications call...
International audienceHarnessing the power of low-dimensional materials in thermal applications call...
In solids and molecules, atoms vibrate about their respective equilibrium positions at finite temper...
Modeling thermal transport through interfaces has been one of the most challenging problems in nanos...
One-dimensional particle chains are fundamental models to explain anomalous thermal conduction in lo...
For thermal transport in one-dimensional (1D) systems, recent studies have suggested that employing ...
One-dimensional particle chains are fundamental models to explain anomalous thermal conduction in lo...
Reproducing Fourier's law of heat conduction from a microscopic stochastic model is a long standing ...
We study the thermal conductivity, at fixed positive temperature, of a disordered lattice of harmoni...
We study heat conduction in a one-dimensional disordered anharmonic chain with arbitrary heat bath b...