首页> 外文期刊>Journal of optics, B. Quantum and semiclassical optics: Journal of the European Optical Society >From linear optical quantum computing to Heisenberg-limited interferometry
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From linear optical quantum computing to Heisenberg-limited interferometry

机译:从线性光学量子计算到海森堡有限干涉仪

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摘要

The working principles of linear optical quantum computing are based on photodetection, namely, projective measurements. The use of photodetection can provide efficient nonlinear interactions between photons at the single-photon level, which is technically problematic otherwise. We report an application of such a technique to prepare quantum correlations as an important resource for Heisenberg-limited optical interferometry, where the sensitivity of phase measurements can be improved beyond the usual shot-noise limit. Furthermore, using such nonlinearities, optical quantum non-demolition measurements can now be carried out easily at the single-photon level.
机译:线性光学量子计算的工作原理基于光电检测,即投影测量。光电检测的使用可以在单光子级的光子之间提供有效的非线性相互作用,否则在技术上是有问题的。我们报道了这种技术的应用,该技术准备量子相关,作为海森堡有限光学干涉测量的重要资源,在该光学干涉测量中,相位测量的灵敏度可以提高到超出通常的散粒噪声极限。此外,使用这种非线性,现在可以轻松地在单光子级进行光学量子不爆破测量。

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