English

Quantum battery based on dipole-dipole interaction and external driving field

Quantum Physics 2023-05-22 v1

Abstract

The Dicke model is a fundamental model in quantum optics, which describes the interaction between quantum cavity field and a large ensemble of two-level atoms. In this work, we propose an efficient charging quantum battery achieved by considering an extension Dicke model with dipole-dipole interaction and an external driving field. We focus on the influence of the atomic interaction and the driving field on the performance of the quantum battery during the charging process and find that the maximum stored energy exhibits a critical phenomenon. The maximum stored energy and maximum charging power are investigated by varying the number of atoms. When the coupling between atoms and cavity is not very strong, compared to the Dicke quantum battery, such quantum battery can achieve more stable and faster charging. In addition, the maximum charging power approximately satisfies a superlinear scaling relation PmaxβNαP_{\rm max}\varpropto\beta N^{\alpha}, where the quantum advantage α=1.6\alpha=1.6 can be reached via optimizing the parameters.

Keywords

Cite

@article{arxiv.2305.03294,
  title  = {Quantum battery based on dipole-dipole interaction and external driving field},
  author = {Wuji Zhang and Shuyue Wang and Chunfeng Wu and Gangcheng Wang},
  journal= {arXiv preprint arXiv:2305.03294},
  year   = {2023}
}

Comments

10 pages, 7 figures

R2 v1 2026-06-28T10:26:28.431Z