Dynamics of quantum battery capacity under Markovian channels
Abstract
We study the dynamics of the quantum battery capacity for the Bell-diagonal states under Markovian channels on the first subsystem. We show that the capacity increases for special Bell-diagonal states under amplitude damping channel. The sudden death of the capacity occurs under depolarizing channel. We also investigate the capacity evolution of Bell-diagonal states under Markovian channels on the first subsystem times. It is shown that the capacity under depolarizing channel decreases initially, then increases for small and tend to zero for large . We find that under bit flip channel and amplitude damping channel, the quantum battery capacity of special Bell-diagonal states tends to a constant for large , namely, the frozen capacity occurs. The dynamics of the capacity of the Bell-diagonal states under two independent same type local Markovian channels is also studied.
Keywords
Cite
@article{arxiv.2408.03797,
title = {Dynamics of quantum battery capacity under Markovian channels},
author = {Yao-Kun Wang and Li-Zhu Ge and Tinggui Zhang and Shao-Ming Fei and Zhi-Xi Wang},
journal= {arXiv preprint arXiv:2408.03797},
year = {2024}
}
Comments
12 pages, 6 figures