Continuous measurements of quantum phase

V. Belavkin, C. Bendjaballah
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引用次数: 11

Abstract

The question of phase measurement for a quantum oscillator using the quantum non-demolition principle (NDP), which does not need the use of the wave packet reduction postulate, is studied. It is shown that this approach is appropriate to introduce in a proper way the relevant observables for unlocalized (unsharp) measurement of quantum phase. Our analysis suggests that in contrast to other quantum-mechanical problems (e.g. The position and the momentum of a particle), the operator to represent the phase of a quantum field cannot be separated from the measurement process. Thus, the quantum phase operator must be defined for a corresponding measurement scheme. Moreover, it allows us to describe the time continuous process of quantum phase observations and also to study the stochastic dynamics of the oscillator under such measurement.
量子相位的连续测量
研究了不需要使用波包约简假设,利用量子不破坏原理(NDP)测量量子振荡器相位的问题。结果表明,该方法可以适当地引入量子相位非定域(非锐化)测量的相关观测值。我们的分析表明,与其他量子力学问题(例如粒子的位置和动量)相比,表示量子场相位的算子不能与测量过程分开。因此,必须为相应的测量方案定义量子相位算符。此外,它使我们能够描述量子相观测的时间连续过程,并研究这种测量下振荡器的随机动力学。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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