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首页> 外文期刊>International Journal of Optics >High-NOON States with High Flux of Photons Using Coherent Beam Stimulated Noncollinear Parametric Down Conversion
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High-NOON States with High Flux of Photons Using Coherent Beam Stimulated Noncollinear Parametric Down Conversion

机译:使用相干光束具有高通量光子的高日状态刺激非可折叠参数下转换

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We show how to reach high fidelity NOON states with a high count rate inside optical interferometers. Previously, it has been shown that by mixing squeezed and coherent light at a beam splitter, it is possible to generate NOON states of arbitrary N with a fidelity as high as 94%. The scheme is based on higher-order interference between “quantum” down-converted light and “classical” coherent light. However, this requires optimizing the amplitude ratio of classical to quantum light, thereby limiting the overall count rate for the interferometric super-resolution signal. We propose using coherent beam stimulated noncollinear two-mode down-converted light as input to the interferometer. Our scheme is based on the stimulation of noncollinear parametric down conversion by coherent light sources. We get a better flexibility of choosing the amplitude ratio in generating NOON states. This enables super-resolution intensity exceeding the previous scheme by many orders of magnitude. Therefore, we hope to improve the magnitude of N-fold super-resolution in quantum interferometry for arbitrary N using bright light sources. We give improved results for N?=?4 and 5.
机译:我们展示了如何在光学干涉仪内具有高计数率的高保真中午状态。以前,已经示出了通过在分束器处混合挤压和相干光,可以产生任意N的中午状态,高达94%。该方案基于“量子”下转换光和“古典”相干光之间的高阶干扰。然而,这需要优化经典与量子光的幅度比,从而限制了干涉式超分辨率信号的整体计数率。我们建议使用相干光束刺激的非可折叠双模式下转换光作为输入到干涉仪。我们的方案基于相干光源的非可折叠参数转换的刺激。我们获得更好地灵活地选择生成中午状态时的幅度比。这使得超分辨率强度超过了以前的方案,所以通过许多数量级。因此,我们希望利用明亮光源改善Quantum干涉测量中的N倍超分辨率的大小。我们给出了n?= 4和5的改善结果。

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