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Quantum optical interferometry via the mixing of coherent and photon-subtracted squeezed vacuum states of light

机译:通过混合相干光和减去光子的压缩真空状态进行的量子光学干涉术

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摘要

Hofmann and Ono [Phys. Rev. A 76, 031806, (2007)] showed that the mixing of coherent light and single-mode squeezed light at a beam splitter gives good approximation results in a superposition of path-entangled photon number states (so-called N00N states), which can be used for phase-shift measurements by coincident detections at the output of an interferometer. They showed that N00N states for arbitrary photon number N could be produced by this procedure. Afek et al. [Science 328, 879 (2010)] have implemented the Hofmann-Ono proposal in the laboratory. In this paper, we show that, for a given coherent state amplitude and a given squeezing parameter, the mixing of coherent states and photon-subtracted squeezed vacuum states at the first beam splitter of an interferometer leads to improved phase-shift measurement sensitivity when using the photon-number detection technique on one of the output beams of the device. We also show that the phase-shift measurements will also be super-resolved to a greater degree than is possible by mixing coherent and squeezed vacuum light of the same field parameters.
机译:霍夫曼和小野[Phys。 Rev. A 76,031806,(2007)]表明,在分束器处相干光和单模压缩光的混合在路径纠缠的光子数状态(所谓的N00N状态)的叠加中给出了良好的近似结果,通过在干涉仪输出端同时进行检测,可将其用于相移测量。他们表明,通过该程序可以产生任意光子数N的N00N个状态。 Afek等。 [Science 328,879(2010)]已在实验室中实施了Hofmann-Ono提案。在本文中,我们表明,对于给定的相干态振幅和给定的压缩参数,干涉仪的第一个分束器处的相干态和光子减去的压缩真空态的混合可提高使用时的相移测量灵敏度在设备的输出光束之一上进行光子数检测技术。我们还表明,相移测量值也将比通过混合相同场参数的相干和压缩真空光所能实现的分辨度更高。

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