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Continuous Real-Time Tracking of a Quantum Phase Below the Standard Quantum Limit

机译:连续实时跟踪低于标准量子极限的量子相

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We propose a scheme for continuously measuring the evolving quantum phase of a collective spin composed of N pseudospins. Quantum nondemolition measurements of a lossy cavity mode interacting with an atomic ensemble are used to directly probe the phase of the collective atomic spin without converting it into a population difference. Unlike traditional Ramsey measurement sequences, our scheme allows for real-time tracking of time-varying signals. As a bonus, spin-squeezed states develop naturally, providing real-time phase estimation significantly more precise than the standard quantum limit of Delta phi(SQL) = 1 root N rad.
机译:我们提出了一种方案,用于连续测量由N个伪自旋组成的集体自旋的演化量子相。与原子整体相互作用的有损腔模式的量子非爆破测量用于直接探测集体原子自旋的相位,而无需将其转换为种群差异。与传统的Ramsey测量序列不同,我们的方案允许实时跟踪时变信号。另外,自旋压缩态自然发展,提供的实时相位估计比Delta phi(SQL)= 1根N rad的标准量子极限要精确得多。

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