半经典物理学
量子
物理
量子混沌
费希尔信息
统计物理学
量子力学
混乱的
量子算法
量子信息
量子过程
开放量子系统
量子耗散
量子操作
经典力学
量子动力学
量子不和谐
量子光学
量子态
量子系统
相(物质)
理论物理学
量子传感器
振幅阻尼通道
量子相
差异(会计)
量子退相干
量子涨落
量子技术
量子信道
作者
Mahdi RouhbakhshNabati,Daniel Braun,Henning Schomerus
摘要
Quantum sensors driven into the quantum chaotic regime can have dramatically enhanced sensitivity, which, however, depends intricately on the details of the underlying classical phase space. Here, we develop an accurate semiclassical approach that provides direct and efficient access to the phase-space-resolved quantum Fisher information (QFI), the central quantity that quantifies the ultimate achievable sensitivity. This approximation reveals, in very concrete terms, that the QFI is large whenever a specific dynamical quantity tied to the sensing parameter displays a large variance over the course of the corresponding classical time evolution. Applied to a paradigmatic system of quantum chaos, the kicked top, we show that the semiclassical description is accurate already for modest quantum numbers, i.e., deep in the quantum regime, and it extends seamlessly to very high quantum numbers that are beyond the reach of other methods.
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