量子计量学
计量学
协变变换
噪音(视频)
量子噪声
量子极限
相位噪声
物理
量子传感器
厄米矩阵
量子
统计物理学
极限(数学)
领域(数学)
理论物理学
量子力学
计算机科学
量子技术
光学
数学
开放量子系统
人工智能
数学分析
纯数学
图像(数学)
作者
Jia‐Xin Peng,Baiqiang Zhu,Weiping Zhang,Keye Zhang
标识
DOI:10.1103/physrevlett.133.090801
摘要
The detrimental impact of noise on sensing performance in quantum metrology has been widely recognized by researchers in the field. However, there are no explicit fundamental laws of physics stating that noise invariably weakens quantum metrology. We reveal that phase-covariant noise either degrades or remains neutral to sensing precision, whereas non-phase-covariant noise can potentially enhance parameter estimation, surpassing even the ultimate precision limit achievable in the absence of noise. This implies that a non-Hermitian quantum sensor may outperform its Hermitian counterpart in terms of sensing performance. To illustrate and validate our theory, we present several paradigmatic examples of magnetic field metrology.
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