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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Nonclassical correlations of phase noise and photon number in quantum nondemolition measurements - art. no. 033815
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Nonclassical correlations of phase noise and photon number in quantum nondemolition measurements - art. no. 033815

机译:量子非爆破测量中相位噪声和光子数的非经典相关性-艺术没有。 033815

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摘要

The continuous transition from a low resolution quantum nondemolition measurement of light field intensity to a precise measurement of photon number is described using a generalized measurement postulate. In the intermediate regime, quantization appears as a weak modulation of measurement probability. In this regime, the measurement result is strongly correlated with the amount of phase decoherence introduced by the measurement interaction. In particular, the accidental observation of half integer photon numbers preserves phase coherence in the light field, while the accidental observation of quantized values increases decoherence. The quantum mechanical nature of this correlation is discussed and the implications for the general interpretation of quantization are considered. [References: 27]
机译:使用广义的测量假设描述了从光场强度的低分辨率量子非分解测量到光子数精确测量的连续转变。在中间状态下,量化表现为对测量概率的弱调制。在这种情况下,测量结果与由测量相互作用引入的相位去相干量密切相关。特别是,偶然观察到半个整数光子数会保留光场中的相位相干性,而偶然观察到量化值会增加去相干性。讨论了这种相关性的量子力学性质,并考虑了对量化的一般解释的含义。 [参考:27]

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