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Rectification of heat currents across nonlinear quantum chains: A versatile approach beyond weak thermal contact

Authors :
Motz, Thomas
Wiedmann, Michael
Stockburger, Jürgen T.
Ankerhold, Joachim
Source :
T. Motz et al 2018 New J. Phys. 20 113020
Publication Year :
2018

Abstract

Within the emerging field of quantum thermodynamics the issues of heat transfer and heat rectification are basic ingredients for the understanding and design of heat engines or refrigerators at nanoscales. Here, a consistent and versatile approach for mesoscopic devices operating with continuous degrees of freedom is developed valid from low up to strong system-reservoir couplings and over the whole temperature range. It allows to cover weak to moderate nonlinearities and is applicable to various scenarios including the presence of disorder and external time-dependent fields. As a particular application coherent one-dimensional chains of anharmonic oscillators terminated by thermal reservoirs are analyzed with particular focus on rectification. The efficiency of the method opens a door to treat also rather long chains and extensions to higher dimensions and geometries.<br />Comment: 32 pages, 15 figures; title, abstract and introduction modified; a further figure included (figure 12 right); further references added; minor typos corrected

Details

Database :
arXiv
Journal :
T. Motz et al 2018 New J. Phys. 20 113020
Publication Type :
Report
Accession number :
edsarx.1807.07634
Document Type :
Working Paper
Full Text :
https://doi.org/10.1088/1367-2630/aaea90