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Minimal time required to charge a quantum system

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Title
Minimal time required to charge a quantum system
Author(s)
Gyhm, Ju-Yeon; Dario Rosa; Dominik Šafránek
Publication Date
2024-02
Journal
Physical Review A, v.109, no.2
Publisher
American Physical Society
Abstract
We introduce a quantum charging distance as the minimal time that it takes to reach one state (charged state) from another state (depleted state) via a unitary evolution, assuming limits on the resources invested into the driving Hamiltonian. For pure states it is equal to the Bures angle, while for mixed states its computation leads to an optimization problem. Thus, we also derive easily computable bounds on this quantity. The charging distance tightens the known bound on the mean charging power of a quantum battery, it quantifies the quantum charging advantage, and it leads to an always achievable quantum speed limit. In contrast with other similar quantities, the charging distance does not depend on the eigenvalues of the density matrix, it depends only on the corresponding eigenspaces. This research formalizes and interprets quantum charging in a geometric way, and provides a measurable quantity that one can optimize to maximize the speed of charging of future quantum batteries. © 2024 American Physical Society.
URI
https://pr.ibs.re.kr/handle/8788114/15065
DOI
10.1103/PhysRevA.109.022607
ISSN
2469-9926
Appears in Collections:
Center for Theoretical Physics of Complex Systems(복잡계 이론물리 연구단) > 1. Journal Papers (저널논문)
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