Thermal rectification in segmented Frenkel-Kontorova lattices with asymmetric next-nearest-neighbor interactions

Fuente: arXiv
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Main Authors: Romero-Bastida, M., Varela, A. Poceros
Format: Preprint
Published: 2024
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author Romero-Bastida, M.
Varela, A. Poceros
author_facet Romero-Bastida, M.
Varela, A. Poceros
contents In this work we conduct an extensive study of the asymmetric heat flow, i.e. thermal rectification, present in the two-segment Frenkel Kontorova model with both nearest-neighbor (NN) and next-nearest-neighbor (NNN) interactions. We have considered systems with both high and low asymmetry and determined that, in the weak-coupling limit, thermal rectification is larger when NNN interactions are relevant. The behavior of the heat fluxes as a function of the coupling strength between the two segments is largely consistent with a well-defined rectification for larger system sizes. The local heat fluxes present a very different behavior for systems with high and low asymmetry. The results of this work may help in the design of molecular bridges, which have recently been shown to be able to function as thermal rectification devices.
format Preprint
id arxiv_https___arxiv_org_abs_2411_09785
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Thermal rectification in segmented Frenkel-Kontorova lattices with asymmetric next-nearest-neighbor interactions
Romero-Bastida, M.
Varela, A. Poceros
Statistical Mechanics
In this work we conduct an extensive study of the asymmetric heat flow, i.e. thermal rectification, present in the two-segment Frenkel Kontorova model with both nearest-neighbor (NN) and next-nearest-neighbor (NNN) interactions. We have considered systems with both high and low asymmetry and determined that, in the weak-coupling limit, thermal rectification is larger when NNN interactions are relevant. The behavior of the heat fluxes as a function of the coupling strength between the two segments is largely consistent with a well-defined rectification for larger system sizes. The local heat fluxes present a very different behavior for systems with high and low asymmetry. The results of this work may help in the design of molecular bridges, which have recently been shown to be able to function as thermal rectification devices.
title Thermal rectification in segmented Frenkel-Kontorova lattices with asymmetric next-nearest-neighbor interactions
topic Statistical Mechanics
url https://arxiv.org/abs/2411.09785