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Using interaction-based readouts to approach the ultimate limit of detection-noise robustness for quantum-enhanced metrology in collective spin systems

机译:采用基于交互的读数来接近集体自旋系统中量子增强计量的检测噪声稳健性的最终极限

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摘要

We consider the role of detection noise in quantum-enhanced metrology in collective spin systems and derive a fundamental bound for the maximum obtainable sensitivity for a given level of added detection noise. We then present an interaction-based readout utilizing the commonly used one-axis twisting scheme that approaches this bound for states generated via several commonly considered methods of generating quantum enhancement, such as one-axis twisting, two-axis countertwisting, twist-and-turn squeezing, quantum nondemolition measurements, and adiabatically scanning through a quantum phase transition. We demonstrate that our method performs significantly better than other recently proposed interaction-based readouts. These results may help provide improved sensitivity for quantum-sensing devices in the presence of unavoidable detection noise.
机译:我们考虑了检测噪声在集体自旋系统中量子增强的计量中的作用,并为给定水平的添加检测噪声推导出最大可获得的灵敏度的基本限制。 然后,我们利用基于交互的读数利用常用的单轴扭转方案,该读出是通过几种通常考虑的产生量子增强方法产生的状态的常用的单轴扭曲方案,例如一轴扭曲,双轴逆住,扭曲和 - 转动挤压,量子非透射测量,并防止量子相位过渡扫描。 我们证明我们的方法比其他最近提出的基于交互的读出更好地表现得显着更好。 这些结果可能有助于在存在不可避免的检测噪声存在下提供量子传感装置的改善灵敏度。

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