Chiral heat transport in driven quantum Hall and quantum spin Hall edge states

We consider a model for an edge state of electronic systems in the quantum Hall regime with filling ν=1 and in the quantum spin Hall regime. In both cases, the system is in contact with two reservoirs by tunneling at point contacts. Both systems are locally driven by applying an ac voltage in one of...

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Autores principales: Arrachea, L., Fradkin, E.
Formato: JOUR
Acceso en línea:http://hdl.handle.net/20.500.12110/paper_10980121_v84_n23_p_Arrachea
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spelling todo:paper_10980121_v84_n23_p_Arrachea2023-10-03T16:06:19Z Chiral heat transport in driven quantum Hall and quantum spin Hall edge states Arrachea, L. Fradkin, E. We consider a model for an edge state of electronic systems in the quantum Hall regime with filling ν=1 and in the quantum spin Hall regime. In both cases, the system is in contact with two reservoirs by tunneling at point contacts. Both systems are locally driven by applying an ac voltage in one of the contacts. By weakly coupling them to a third reservoir, the transport of the generated heat is studied in two different ways: (i) when the third reservoir acts as a thermometer, the local temperature is sensed and (ii) when the third reservoir acts as a voltage probe, the time-dependent local voltage is sensed. Our results indicate a chiral propagation of the heat along the edge in the quantum Hall and in the quantum spin Hall cases (if the injected electrons are spin polarized). We also show that a analogous picture is obtained if instead of heating by ac driving the system is put in contact to a stationary reservoir at a higher temperature. In both cases, the temperature profile shows that the electrons along the edge thermalize with the closest "upstream" reservoir. © 2011 American Physical Society. JOUR info:eu-repo/semantics/openAccess http://creativecommons.org/licenses/by/2.5/ar http://hdl.handle.net/20.500.12110/paper_10980121_v84_n23_p_Arrachea
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
description We consider a model for an edge state of electronic systems in the quantum Hall regime with filling ν=1 and in the quantum spin Hall regime. In both cases, the system is in contact with two reservoirs by tunneling at point contacts. Both systems are locally driven by applying an ac voltage in one of the contacts. By weakly coupling them to a third reservoir, the transport of the generated heat is studied in two different ways: (i) when the third reservoir acts as a thermometer, the local temperature is sensed and (ii) when the third reservoir acts as a voltage probe, the time-dependent local voltage is sensed. Our results indicate a chiral propagation of the heat along the edge in the quantum Hall and in the quantum spin Hall cases (if the injected electrons are spin polarized). We also show that a analogous picture is obtained if instead of heating by ac driving the system is put in contact to a stationary reservoir at a higher temperature. In both cases, the temperature profile shows that the electrons along the edge thermalize with the closest "upstream" reservoir. © 2011 American Physical Society.
format JOUR
author Arrachea, L.
Fradkin, E.
spellingShingle Arrachea, L.
Fradkin, E.
Chiral heat transport in driven quantum Hall and quantum spin Hall edge states
author_facet Arrachea, L.
Fradkin, E.
author_sort Arrachea, L.
title Chiral heat transport in driven quantum Hall and quantum spin Hall edge states
title_short Chiral heat transport in driven quantum Hall and quantum spin Hall edge states
title_full Chiral heat transport in driven quantum Hall and quantum spin Hall edge states
title_fullStr Chiral heat transport in driven quantum Hall and quantum spin Hall edge states
title_full_unstemmed Chiral heat transport in driven quantum Hall and quantum spin Hall edge states
title_sort chiral heat transport in driven quantum hall and quantum spin hall edge states
url http://hdl.handle.net/20.500.12110/paper_10980121_v84_n23_p_Arrachea
work_keys_str_mv AT arracheal chiralheattransportindrivenquantumhallandquantumspinhalledgestates
AT fradkine chiralheattransportindrivenquantumhallandquantumspinhalledgestates
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