Boosting energy transfer between quantum devices through spectrum engineering in the dissipative ultrastrong coupling regime

Fuente: arXiv
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Main Authors: Crescente, Alba, Ferraro, Dario, Sassetti, Maura
Format: Preprint
Published: 2023
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author Crescente, Alba
Ferraro, Dario
Sassetti, Maura
author_facet Crescente, Alba
Ferraro, Dario
Sassetti, Maura
contents The coherent energy transfer between two quantum devices (a quantum charger and a quantum battery) mediated by a photonic cavity is investigated, in presence of dissipative environments, with particular focus on the the ultrastrong coupling regime. Here, very short transfer times and high charging power can be achieved in comparison with the usually addressed weak coupling case. Such phenomenology is further magnified by the presence of level crossings appearing in the energy spectrum and which reveal very robust against dissipative environmental effects. Moreover, by carefully control the physical parameters of the model, e.g. the matter-radiation coupling and the frequencies of the system, it is possible to tune these crossings making this device more flexible and experimentally feasible. Finally to broaden our analysis, we assume the possibility of choosing between a Fock and a coherent initial state of the cavity, with the latter showing better energetic performances.
format Preprint
id arxiv_https___arxiv_org_abs_2312_12034
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Boosting energy transfer between quantum devices through spectrum engineering in the dissipative ultrastrong coupling regime
Crescente, Alba
Ferraro, Dario
Sassetti, Maura
Quantum Physics
Mesoscale and Nanoscale Physics
The coherent energy transfer between two quantum devices (a quantum charger and a quantum battery) mediated by a photonic cavity is investigated, in presence of dissipative environments, with particular focus on the the ultrastrong coupling regime. Here, very short transfer times and high charging power can be achieved in comparison with the usually addressed weak coupling case. Such phenomenology is further magnified by the presence of level crossings appearing in the energy spectrum and which reveal very robust against dissipative environmental effects. Moreover, by carefully control the physical parameters of the model, e.g. the matter-radiation coupling and the frequencies of the system, it is possible to tune these crossings making this device more flexible and experimentally feasible. Finally to broaden our analysis, we assume the possibility of choosing between a Fock and a coherent initial state of the cavity, with the latter showing better energetic performances.
title Boosting energy transfer between quantum devices through spectrum engineering in the dissipative ultrastrong coupling regime
topic Quantum Physics
Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2312.12034