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Multi-photon absorption limits to heralded single photon sources

机译:多光子吸收限制预示着单一光子源

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Single photons are of paramount importance to future quantum technologies, including quantum communication and computation. Nonlinear photonic devices using parametric processes offer a straightforward route to generating photons, however additional nonlinear processes may come into play and interfere with these sources. Here we analyse spontaneous four-wave mixing (SFWM) sources in the presence of multi-photon processes. We conduct experiments in silicon and gallium indium phosphide photonic crystal waveguides which display inherently different nonlinear absorption processes, namely two-photon (TPA) and three-photon absorption (ThPA), respectively. We develop a novel model capturing these diverse effects which is in excellent quantitative agreement with measurements of brightness, coincidence-to-accidental ratio (CAR) and second-order correlation function g (2)(0), showing that TPA imposes an intrinsic limit on heralded single photon sources. We build on these observations to devise a new metric, the quantum utility (QMU), enabling further optimisation of single photon sources.
机译:单个光子对未来量子技术至关重要,包括量子通信和计算。使用参数过程的非线性光子器件提供了用于产生光子的直接路线,但是额外的非线性过程可以播放并干扰这些来源。在这里,我们在存在多光子过程的情况下分析自发的四波混合(SFWM)源。我们在硅和镓铟磷化铟型光子晶体波导中进行实验,其分别显示固有的不同非线性吸收过程,即两光子(TPA)和三光子吸收(THPA)。我们开发一种新型模型,捕获这些不同的效果,这些效果与亮度测量,巧合 - 意外比率(汽车)和二阶相关函数G (2)(0),表明TPA对预示的单光子源施加了内在限制。我们建立在这些观察结果中,设计了新的公制,量子实用程序(QMU),从而进一步优化单个光子源。

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