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Noise characterization in double-heralded generation of two-photon-states by spontaneous four-wave-mixing

机译:自发四波混合中双重生成双重生成的噪声特性

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In quantum optics experiments, heralding, a form of conditional state preparation, is a useful tool for creating photon-number states from nonlinear optical sources for quantum-information science experiments. Heralding occurs when one photon from a correlated pair is detected to herald the presence of the other photon, labeled the signal photon. However, as heralding is extended to two or more photon pairs, the presence of noise photons in the herald channel quickly degrades the photon statistics of the signal photons. We create two-photon number states from a non-degenerate, third-order nonlinear optical fiber source with double heralding and present a method for verifying these photon-number states. The consequences of noisy heralding on the statistics of states created via third-order nonlinear processes are analyzed. We present a method for estimating the effects of noise photons on the signal photon statistics. Additionally, we prove the equivalence between noise in the herald channel and a loss in the signal channel. We utilize this equivalence to infer the photon statistics of the photon-number states in the signal channel that would be present in the absence of noise in the herald channel. By measuring the statistics of the signal channels with noise in the herald channel and comparing to the inferred, noise-free distribution, we can estimate the potential benefits of additional noise-reducing procedures on the experiment.
机译:在量子光学实验中,封环是一种条件状态准备,是一种有用的工具,用于从非线性光学来源创建来自非线性光学来源的光子数状态。当检测来自相关对的一个光子以预热另一个光子的存在时,发生甲纹,标记信号光子。然而,由于封环扩展到两个或更多个光子对,导通信道中的噪声光子的存在迅速降低了信号光子的光子统计。我们从非退化的三阶非线性光纤源中创建双光子数状态,具有双纹包并呈现用于验证这些光子数状态的方法。分析了嘈杂的甲状腺覆盖对通过三阶非线性进程创建的国家统计的后果。我们介绍了一种估计噪声光子对信号光子统计的影响的方法。此外,我们证明了先驱信道中的噪声与信号通道中的损耗之间的等价。我们利用这种等价来推断在没有噪声中的噪声中存在的信号通道中的光子数状态的光子统计。通过在预示通道中噪声测量信号通道的统计,并与推断的无噪声分配相比,我们可以估计额外的降噪程序在实验上的潜在好处。

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