Quantum battery of interacting spins with environmental noise

Fang Zhao, F. Dou, Qing Zhao
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引用次数: 14

Abstract

A quantum battery is a temporary energy-storage system. We constructed the quantum battery model of an N-spin chain with nearest-neighbor hopping interaction and investigated the charging process of the quantum battery. We obtained the maximum energy in the quantum battery charged by a coherent cavity driving field or a thermal heat bath. We confirmed that for a finite-length spin chain, thermal charging results in a nonzero ergotropy, contradicting a previous result: that an incoherent heat source cannot charge a single-spin quantum battery. The nearest-neighbor hopping interaction induces energy band splitting, which enhances the energy storage and the ergotropy of the quantum battery. We found a critical point in the energy and ergotropy resulting from the ground-state quantum phase transition, after which the energy significantly enhance. Finally, we also found that disorder increased the energy of the quantum battery.
自旋与环境噪声相互作用的量子电池
量子电池是一种临时的能量存储系统。我们建立了具有最近邻跳变相互作用的n -自旋链量子电池模型,并研究了量子电池的充电过程。我们获得了在相干腔驱动场或热浴中充电的量子电池的最大能量。我们证实,对于有限长度的自旋链,热充电导致非零自恋,这与之前的结果相矛盾:非相干热源不能给单自旋量子电池充电。最近邻跳变相互作用引起能带分裂,增强了量子电池的能量储存和自恋性。在基态量子相变引起的能量和自恋性中发现了一个临界点,在此之后能量显著增强。最后,我们还发现无序增加了量子电池的能量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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