论文标题

XXZ中央自旋模型中的量子相变

Quantum phase transition in XXZ central spin model

论文作者

Shao, Lei, Zhang, Rui, Lu, Wangjun, Zhang, Zhucheng, Wang, Xiaoguang

论文摘要

我们研究了XXZ中央自旋模型中的量子相变(QPT),该模型可以描述为与N浴自旋耦合的自旋1/2粒子。通常,QPT应该仅发生在热力学极限中。相比之下,我们表明,中央自旋模型在限制中表现出正常的抗渗透相变,其中中央旋转与浴旋转的过渡频率的比率往往是无穷大的。我们在正常阶段和上级阶段分析地给出了低能的有效汉密尔顿,我们发现纵向相互作用可以显着影响基态的激发数和相干性。对于负纵向相互作用而言,这两个量显着增强,同时抑制了正纵向相互作用。我们还使用量子Fisher信息(QFI)来表征QPT并说明可以在实践中应用的测量方案。这项工作建立了Qubit-Spin系统与Qubit-Field Systems之间的新联系,这为实现中央旋转系统中临界性增强的量子传感提供了一种可能性。

We investigate the quantum phase transition (QPT) in the XXZ central spin model, which can be described as a spin-1/2 particle coupled to N bath spins. In general, the QPT is supposed to occur only in the thermodynamical limit. In contrast, we present that the central spin model exhibits a normal-to-superradiant phase transition in the limit where the ratio of the transition frequency of the central spin to that of the bath spins and the number of the bath spins tend to infinity. We give the low-energy effective Hamiltonian analytically in the normal phase and the superradiant phase, and we find that the longitudinal interaction can significantly influence the excitation number and the coherence of the ground state. These two quantities are remarkably enhanced for the negative longitudinal interaction while suppressed for the positive longitudinal interaction. We also use the quantum Fisher information (QFI) to characterize the QPT and illustrate a measurement scheme that can be applied in practice. This work builds a novel connection between the qubit-spin systems and the qubit-field systems, which provides a possibility for the realization of criticality-enhanced quantum sensing in central spin systems.

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