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Atom localization and center-of-mass wave-function determination via multiple simultaneous quadrature measurements

机译:通过多次同时进行的正交测量确定原子的位置并确定质心波函数

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We discuss localization and center-of-mass wave-function measurement of a quantum particle using multiple simultaneous dispersive interactions of the particle with different standing-wave fields. In particular, we consider objects with an internal structure consisting of a single ground state and several excited states. The transitions between ground and the corresponding excited states are coupled to the light fields in the dispersive limit, thus giving rise to a phase shift of the light field during the interaction. We show that multiple simultaneous measurements allow both an increase in the measurement or localization precision in a single direction and the performance of multidimensional measurements or localization. Further, we show that multiple measurements may relax the experimental requirements for each individual measurement.
机译:我们讨论了使用具有不同驻波场的粒子的多个同时色散相互作用对量子粒子进行定位和质心波函数测量的过程。特别地,我们考虑具有内部结构的对象,该内部结构由单个基态和多个激发态组成。基态和相应的激发态之间的跃迁在色散极限中耦合到光场,从而在交互作用期间引起光场的相移。我们表明,多个同时进行的测量既可以提高单个方向上的测量或定位精度,又可以提高多维测量或定位的性能。此外,我们表明,多次测量可以放宽每个单独测量的实验要求。

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