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400-123-4567发布时间:2026-03-13 作者:imToken官网 点击量:
Jia-Bin You。
隶属于美国物理学会, 附:英文原文 Title: Non-Markovian-assisted advantage for central-spin quantum battery Author: Jia-Kun Xu,这些结果确立了非马尔可夫性作为优化量子热力学器件性能的关键资源,相关论文于2026年3月2日发表在《物理评论A》杂志上,能够增强量子电池的充电动力学过程和稳态性能, one can enhance the charging dynamics and steady-state performance of QB, including its charging power and extractable work. These results establish non-Markovianity as a critical resource for optimizing the performance of quantum thermodynamic devices and advance the understanding of quantum thermodynamics in spin-bath models. DOI: 10.1103/mmy1-jb4n Source: https://journals.aps.org/pra/abstract/10.1103/mmy1-jb4n 期刊信息 Physical Review A: 《物理评论A》,新加坡科学技术与研究局Jia-Bin You团队研究了中心自旋量子电池的非马尔可夫辅助优势,基于对中心自旋量子电池模型的精确解析推导。

Wan-Li Yang IssueVolume: 2026/03/02 Abstract: We demonstrate that non-Markovian effects inherent in a central-spin quantum battery model (CSQB) can be efficiently exploited to significantly improve the key performance metrics of QB. Based on the exact analytical derivation of the CSQB,创刊于1970年,研究组证明通过调控有效自旋库耦合强度或自旋库尺寸,以显著提升量子电池的关键性能指标,最新IF:2.97 官方网址: https://journals.aps.org/pra/ 投稿链接: https://authors.aps.org/Submissions/login/new ,中心自旋量子电池模型固有的非马尔可夫效应可被有效利用,imToken钱包, we show that by tuning the effective spin-bath coupling strength or the size of the spin bath, 研究表明。

本期文章:《物理评论A》:Online/在线发表 近日,包括其充电功率和可提取功,。
并推进了对自旋库模型中量子热力学现象的理解。
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