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Optimal charging of a superconducting quantum battery

Authors :
Hu, Chang-Kang
Qiu, Jiawei
Souza, Paulo J. P.
Yuan, Jiahao
Zhou, Yuxuan
Zhang, Libo
Chu, Ji
Pan, Xianchuang
Hu, Ling
Li, Jian
Xu, Yuan
Zhong, Youpeng
Liu, Song
Yan, Fei
Tan, Dian
Bachelard, R.
Villas-Boas, C. J.
Santos, Alan C.
Yu, Dapeng
Hu, Chang-Kang
Qiu, Jiawei
Souza, Paulo J. P.
Yuan, Jiahao
Zhou, Yuxuan
Zhang, Libo
Chu, Ji
Pan, Xianchuang
Hu, Ling
Li, Jian
Xu, Yuan
Zhong, Youpeng
Liu, Song
Yan, Fei
Tan, Dian
Bachelard, R.
Villas-Boas, C. J.
Santos, Alan C.
Yu, Dapeng
Publication Year :
2022

Abstract

Quantum batteries are miniature energy storage devices and play a very important role in quantum thermodynamics. In recent years, quantum batteries have been extensively studied, but limited in theoretical level. Here we report the experimental realization of a quantum battery based on superconducting qutrit. Our model explores dark and bright states to achieve stable and powerful charging processes, respectively. Our scheme makes use of the quantum adiabatic brachistochrone, which allows us to speed up the battery ergotropy injection. Due to the inherent interaction of the system with its surrounding, the battery exhibits a self-discharge, which is shown to be described by a supercapacitor-like self-discharging mechanism. Our results paves the way for proposals of new superconducting circuits able to store extractable work for further usage.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1356423116
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1088.2058-9565.ac8444