Thermal rectification in mass-graded next-nearest-neighbor Fermi-Pasta-Ulam lattices
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URI: http://hdl.handle.net/10902/18507ISSN: 1539-3755
ISSN: 1550-2376
ISSN: 2470-0045
ISSN: 2470-0053
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2017-03Derechos
© American Physical Society
Publicado en
Physical Review E 95, 032146 (2017)
Editorial
American Physical Society
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Resumen/Abstract
We study the thermal rectification efficiency, i.e., quantification of asymmetric heat flow, of a one-dimensional mass-graded anharmonic oscillator Fermi-Pasta-Ulam lattice both with nearest-neighbor (NN) and next-nearestneighbor (NNN) interactions. The system presents a maximum rectification efficiency for a very precise value of the parameter that controls the coupling strength of the NNN interactions, which also optimizes the rectification figure when its dependence on mass asymmetry and temperature differences is considered. The origin of the enhanced rectification is the asymmetric local heat flow response as the heat reservoirs are swapped when a finely tuned NNN contribution is taken into account. A simple theoretical analysis gives an estimate of the optimal NNN coupling in excellent agreement with our simulation results.