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Optimal charging of open spin-chain quantum batteries via homodyne-based feedback control

Quantum Physics 2022-08-17 v1

Abstract

We study the problem of charging a dissipative one-dimensional XXXXXX spin-chain quantum battery using local magnetic fields in the presence of spin decay. The introduction of quantum feedback control based on homodyne measurement contributes to improve various performance of the quantum battery, such as energy storage, ergotropy, and effective space utilization rate. For the zero temperature environment, there is a set of optimal parameters to ensure that the spin-chain quantum battery can be fully charged and the energy stored in the battery can be fully extracted under the perfect measurement condition, which is found through the analytical calculation of a simple two-site spin-chain quantum battery and further verified by numerical simulation of a four-site spin-chain counterpart. For completeness, the adverse effects of imperfect measurement, anisotropic parameter, and finite temperature on the charging process of the quantum battery are also considered.

Keywords

Cite

@article{arxiv.2207.05926,
  title  = {Optimal charging of open spin-chain quantum batteries via homodyne-based feedback control},
  author = {Y. Yao and X. Q. Shao},
  journal= {arXiv preprint arXiv:2207.05926},
  year   = {2022}
}

Comments

12 pgaes, 12 figures, accepted by Phys. Rev. E