Quantum estimation of a two-phase spin rotation

C. Vaneph, T. Tufarelli, M. Genoni
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引用次数: 35

Abstract

Abstract system, characterised by two unknown phases, and compare the estimation precision achievable with two different strategies. The first is a standard ‘joint estimation’ strategy, in which a single probe state is used to estimate both parameters, while the second is a ‘sequential’ strategy in which the two phases are estimated separately, each on half of the total number of system copies. In the limit of small angles we show that, although the joint estimation approach yields in general a better performance, the two strategies possess the same scaling of the total phase sensitivity with respect to the spin number j, namely ΔΦ≃ 1/j. Finally, we discuss a simple estimation strategy based on spin squeezed states and spin measurements, and compare its performance with the ultimate limits to the estimation precision that we have derived above.
两相自旋旋转的量子估计
抽象了一个具有两个未知相位的系统,比较了两种方法的估计精度。第一种是标准的“联合估计”策略,其中使用单个探针状态来估计两个参数,而第二种是“顺序”策略,其中两个阶段分别进行估计,每个阶段占系统副本总数的一半。在小角度的限制下,虽然联合估计方法总体上能获得更好的性能,但两种策略的总相灵敏度相对于自旋数j具有相同的标度,即ΔΦ≃1/j。最后,我们讨论了一种基于自旋压缩态和自旋测量的简单估计策略,并将其性能与上述估计精度的极限进行了比较。
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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