论文标题
中央自旋量子电池中的纠缠和工作提取
Entanglement and work extraction in the central-spin quantum battery
论文作者
论文摘要
我们考虑使用中央旋转电池,其中$ n_b $中央旋转用作电池电池和$ n_c $浴缸旋转作为充电单元。结果表明,可以通过麦角拷贝量化了可以提取的电池中存储的能量,并且通过von neumann熵量化了电池包符纠缠。通过使用确切的单细胞和两电池电池的方法,我们的分析结果表明,在充电过程中,可提取的工作在电池收式纠缠达到其最大值之前会缓慢增加,然后当纠缠开始减少时,它将迅速增加。特别是,我们严格地表明,在充电过程结束时,可提取的工作与纠缠之间存在反比关系。此外,我们研究了不同的方法,以实现最佳的工作提取而不会浪费能量。其中,由于充电器具有通用充电时间$ \ propto 1/n_c $,大型可提取工作,以及$ \ sqrt {n_c} $ - 与Tavis-Cummings限制中的电池相比,充电功率的提高。上述结果也已在多电池电池中进行了数值验证。我们的结果为改善中央旋转电池中可提取的工作存储的方式铺平了道路,并突出了可提取的工作与电池包裹纠缠之间的竞争关系。
We consider a central-spin battery where $N_b$ central spins serve as battery cells and $N_c$ bath spins serve as charging units. It is shown that the energy stored in the battery that can be extractable is quantified by the ergotropy, and that battery-charger entanglement is quantified via the Von Neumann entropy. By using an exact approach to a one-cell and two-cell battery, our analytical results suggest that, during the charging process, the extractable work slowly increases before the battery-charger entanglement reaches its maximum and then it will rapidly increase when the entanglement begins to decrease. In particular, we rigorously show that there is an inverse relationship between the extractable work and the entanglement at the end of the charging process. Moreover, we investigate different approaches to realize optimal work extraction without wasted energy. Among them a central-spin battery with an unpolarized Dicke state as the charger possesses a universal charging time $\propto 1/N_c$, large extractable work, and $\sqrt{N_c}$-improvement of charging power compared with the battery in the Tavis-Cummings limit. The above-mentioned results have also been numerically verified in multi-cell batteries. Our results pave the way to improve extractable work storage in the central-spin battery and highlight a competitive relation between the extractable work and the battery-charger entanglement.