系列(地层学)
电池(电)
计算机科学
量子
统计物理学
物理
量子力学
生物
古生物学
功率(物理)
出处
期刊:Physica Scripta
[IOP Publishing]
日期:2025-07-10
卷期号:100 (8): 085403-085403
被引量:2
标识
DOI:10.1088/1402-4896/adee67
摘要
Abstract Quantum batteries harness quantum coherence and entanglement to achieve efficient energy storage beyond classical limits. This study presents a comparative analysis of series and parallel charging protocols, evaluating their impact on charging efficiency, stability, and dissipation. Using the Lindblad master equation, we investigate the effects of multi-photon interactions, cavity decay, atomic relaxation, and thermal fluctuations on the evolution of key physical quantities, including stored energy, ergotropy, and entropy of the charger. Our findings reveal that parallel charging exhibits superior stability, reduced entropy fluctuations, and higher ergotropy, while series charging suffers from increased dissipation and oscillatory instabilities. These insights contribute to the development of high-performance quantum energy storage systems for advanced quantum technologies.
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