Transport enhancement from incoherent coupling between one-dimensional quantum conductors

peer-reviewed
Erstveröffentlichung
2014-05-07Authors
Mendoza-Arenas, J. J.
Mitchison, M. T.
Clark, S. R.
Prior, J.
Jaksch, D.
Wissenschaftlicher Artikel
Published in
New Journal of Physics ; 16 (2014), 5. - Art.-Nr. 053016. - eISSN 1367-2630
Link to original publication
https://dx.doi.org/10.1088/1367-2630/16/5/053016Faculties
Fakultät für NaturwissenschaftenInstitutions
Institut für Theoretische PhysikDocument version
published version (publisher's PDF)Abstract
Abstract
We study the non-equilibrium transport properties of a highly anisotropic two-dimensional lattice of
particles governed by a Heisenberg XXZ Hamiltonian. The anisotropy of the lattice allows us to approximate the system at finite temperature as an array of incoherently coupled one-dimensional chains. We show that in the regime of strong intrachain interactions, the weak interchain coupling considerably boosts spin transport in the driven system. Interestingly, we show that this enhancement increases with the length of the chains, which is related to superdiffusive spin transport. We describe the mechanism behind this effect, compare it to a similar phenomenon in single chains induced by dephasing, and explain why the former is much stronger.
EU Project uulm
BIOQ / Diamond Quantum Devices and Biology / EC / FP7 / 319130
PAPETS / Phonon-Assisted Processes for Energy Transfer and Sensing / EC / FP7 / 323901
PAPETS / Phonon-Assisted Processes for Energy Transfer and Sensing / EC / FP7 / 323901
Subject headings
[GND]: Starke Wechselwirkung | Kohärenz | Energieverlust[LCSH]: Strong interactions (Nuclear physics) | Energy dissipation
[Free subject headings]: spin current | transport enhancement | decoherence
[DDC subject group]: DDC 530 / Physics
Metadata
Show full item recordDOI & citation
Please use this identifier to cite or link to this item: http://dx.doi.org/10.18725/OPARU-46260
Mendoza-Arenas, J. J. et al. (2022): Transport enhancement from incoherent coupling between one-dimensional quantum conductors. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-46260
Citation formatter >