论文标题

具有平均场量子临界的量子计量量的进出平衡量子计量

In and out of equilibrium quantum metrology with mean-field quantum criticality

论文作者

Wald, Sascha, Moreira, Saulo V., Semião, Fernando L.

论文摘要

我们研究集体过渡现象对量子计量方案的影响。单个球形量子自旋(SQS)是刻板印象的玩具模型,可在平均场水平上进行分析见解。首先,我们关注SQS中的平衡量子关键性,并通过分析获得量子渔民信息,这与最小下限相关,以精确地估算驱动相变的参数的估计。我们将其与Fisher信息进行比较,以在采用类似光量的测量值的特定实验场景中进行比较。我们发现量子关键性和挤压在计量方案中是有用的资源。其次,我们获得了耗散性非平衡稳态(NESS)中均衡过渡的量子渔民信息,并研究耗散的存在如何影响参数估计。在这种情况下,众所周知,临界点因取决于耗散率的数量而移动。此处用于设计有序阶段中整个过渡驾驶参数的高精度协议。实际上,对于要估计的参数的某些值,与平衡情况相比,耗散可用于获得更高的精度。

We study the influence that collective transition phenomena have on quantum metrological protocols. The single spherical quantum spin (SQS) serves as stereotypical toy model that allows analytical insights on a mean-field level. First, we focus on equilibrium quantum criticality in the SQS and obtain the quantum Fisher information analytically, which is associated with the minimum lower bound for the precision of estimation of the parameter driving the phase transition. We compare it with the Fisher information for a specific experimental scenario where photoncounting-like measurements are employed. We find how quantum criticality and squeezing are useful resources in the metrological scenario. Second, we obtain the quantum Fisher information for the out of equilibrium transition in the dissipative non-equilibrium steady state (NESS), and investigate how the presence of dissipation affects the parameter estimation. In this scenario, it is known that the critical point is shifted by an amount which depends on the dissipation rate. This is used here to design high precision protocols for a whole range of the transition-driving parameter in the ordered phase. In fact, for certain values of the parameter being estimated, dissipation may be used to obtain higher precision when compared to the equilibrium scenario.

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