Quantum Otto heat engine based on a multiferroic chain working substance


Autoria(s): Azimi, M.; Chotorlishvili, L.; Mishra, S. K.; Vekua, Teimuraz; Huebner, W.; Berakdar, J.
Data(s)

12/06/2014

Resumo

We study a quantum Otto engine operating on the basis of a helical spin-1/2 multiferroic chain with strongly coupled magnetic and ferroelectric order parameters. The presence of a finite spin chirality in the working substance enables steering of the cycle by an external electric field that couples to the electric polarization. We observe a direct connection between the chirality, the entanglement and the efficiency of the engine. An electric-field dependent threshold temperature is identified, above which the pair correlations in the system, as quantified by the thermal entanglement, diminish. In contrast to the pair correlations, the collective many-body thermal entanglement is less sensitive to the electric field, and in the high temperature limit converges to a constant value. We also discuss the correlations between the threshold temperature of the pair entanglement, the spin chirality and the minimum of the fidelities in relation to the electric and magnetic fields. The efficiency of the quantum Otto cycle shows a saturation plateau with increasing electric field amplitude.

Identificador

http://dx.doi.org/10.15488/377

http://www.repo.uni-hannover.de/handle/123456789/400

Idioma(s)

eng

Publicador

Bristol : IOP Publishing Ltd.

Relação

http://dx.doi.org/10.1088/1367-2630/16/6/063018

ESSN:1367-2630

Direitos

CC BY 3.0

https://creativecommons.org/licenses/by/3.0/de/

frei zugänglich

Fonte

New Journal Of Physics 16 (2014)

Palavras-Chave #quantum heat engine #quantum entanglement #frustrated spin chain #multiferroic system #polarization #colloquium #physics #oxides #ddc:530
Tipo

status-type:publishedVersion

doc-type:article

doc-type:Text