论文标题

大量量子电池包型模型中能量和功率的缩放

Scaling of energy and power in a large quantum battery-charger model

论文作者

Gao, Lei, Cheng, Chen, He, Wen-Bin, Mondaini, Rubem, Guan, Xi-Wen, Lin, Hai-Qing

论文摘要

我们研究了多量量子电池包含模型,重点是其对超导量子芯片的潜在仿真。使用大型代表,我们首先获得能源$ e_b(t)$,power $ p_b(t)$及其最大值的分析形式,$ e_b^{\ rm max} $和$ p_b^{\ rm max} $,通过电池部分的电池部分,通过抗Fiferromagnetic Holstein-Promakoff(aftiferromagnetic Holstein-Promakoff(afiferromagnetic Holstein-Primakoff)(afiferromagnetic Holstein-Primakoff(affifermagnogneciatiation))。在这种情况下,我们的结果表明$ p_b^{\ rm max} $随之而来的巨型缩放缩放行为。通过将它们与通过精确的对角(ED)获得的这些相结合,我们将各种物理量的动力学分类,包括用于系统尺寸的电池和充电器零件之间的纠缠,这些尺寸包含10,000吨超过10,000吨。最后,通过检查一组各种系统配置,包括固定的电池尺寸,具有越来越多的充电器盘数,或者两个零件同时生长时,我们将$ e_b^{\ rm max} $和$ p_b^{\ rm max} $的系统尺寸尺度分类,与该系统中的intangelement ottropy有关。与分析结果一致,在这种情况下,还观察到了$ p_b^{\ rm max} $的稳健链伸行为。我们的工作为在超导量子平台中模仿的量子电池实验中提供了总体指南,尤其是表现出远距离耦合的量子平台。

We investigate a multi-qubit quantum battery-charger model, focusing on its potential emulation on a superconducting qubit chip. Using a large-spin representation, we first obtain the analytical form of the energy $E_B(t)$, power $P_B(t)$ and their maximum values, $E_B^{\rm max}$ and $P_B^{\rm max}$, of the battery part by means of the antiferromagnetic Holstein-Primakoff (AFM-HP) transformation within the low-energy approximation. In this case, our results show that superextensive scaling behavior of $P_B^{\rm max}$ ensues. By further combining these with the ones obtained via exact diagonalization (ED), we classify the dynamics of various physical quantities, including the entanglement between the battery and charger parts for system sizes encompassing over 10,000 qubits. Finally, by checking a diverse set of system configurations, including either a fixed battery size with growing number of charger qubits, or when both parts simultaneously grow, we classify the system size scalings of $E_B^{\rm max}$ and $P_B^{\rm max}$, relating it with the entanglement entropy in the system. In agreement with the analytical results, robust superextensive behavior of $P_B^{\rm max}$ is also observed in this case. Our work provides an overall guide for expected features in experiments of quantum batteries emulated in superconducting qubit platforms, in particular ones that exhibit long-range couplings.

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