Precision Limits in Quantum Metrology with Open Quantum Systems

J. Haase, A. Smirne, Jan Kolody'nski, Rafal Demkowicz-Dobrza'nski, S. Huelga
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引用次数: 44

Abstract

Abstract The laws of quantum mechanics allow to perform measurements whose precision supersedes results predicted by classical parameter estimation theory. That is, the precision bound imposed by the central limit theorem in the estimation of a broad class of parameters, like atomic frequencies in spectroscopy or external magnetic field in magnetometry, can be overcomewhen using quantum probes. Environmental noise, however, generally alters the ultimate precision that can be achieved in the estimation of an unknown parameter. This tutorial reviews recent theoretical work aimed at obtaining general precision bounds in the presence of an environment.We adopt a complementary approach,wherewe first analyze the problem within the general framework of describing the quantum systems in terms of quantum dynamical maps and then relate this abstract formalism to a microscopic description of the system’s dissipative time evolution.We will show that although some forms of noise do render quantum systems standard quantum limited, precision beyond classical bounds is still possible in the presence of different forms of local environmental fluctuations.
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开放量子系统下量子计量的精度极限
量子力学定律允许进行精度超过经典参数估计理论预测结果的测量。也就是说,当使用量子探针时,可以克服中心极限定理在估计广泛类别参数时施加的精度界限,例如光谱学中的原子频率或磁强计中的外部磁场。然而,环境噪声通常会改变在估计未知参数时所能达到的最终精度。本教程回顾了最近的理论工作,旨在获得在环境中存在的一般精度界限。我们采用一种互补的方法,首先在量子动力学映射描述量子系统的一般框架内分析问题,然后将这种抽象的形式主义与系统耗散时间演化的微观描述联系起来。我们将表明,尽管某些形式的噪声确实使量子系统具有标准量子限制,但在存在不同形式的局部环境波动的情况下,超越经典界限的精度仍然是可能的。
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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