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通过光纤中的自发四波混频产生的光谱纯的预告单光子:降低色散波动的影响

Spectrally pure heralded single photons by spontaneous four-wave mixing in a fiber: reducing impact of dispersion fluctuations.

作者信息

Koefoed Jacob G, Friis Søren M M, Christensen Jesper B, Rottwitt Karsten

出版信息

Opt Express. 2017 Aug 21;25(17):20835-20849. doi: 10.1364/OE.25.020835.

Abstract

We model the spectral quantum-mechanical purity of heralded single photons from a photon-pair source based on nondegenerate spontaneous four-wave mixing taking the impact of distributed dispersion fluctuations into account. The considered photon-pair-generation scheme utilizes pump-pulse walk-off to produce pure heralded photons and phase matching is achieved through the dispersion properties of distinct spatial modes in a few-mode silica step-index fiber. We show that fiber-core-radius fluctuations in general severely impact the single-photon purity. Furthermore, by optimizing the fiber design we show that generation of single photons with very high spectral purity is feasible even in the presence of large core-radius fluctuations. At the same time, contamination from spontaneous Raman scattering is greatly mitigated by separating the single-photon frequency by more than 32 THz from the pump frequency.

摘要

我们基于非简并自发四波混频,考虑分布式色散涨落的影响,对来自光子对源的预告单光子的光谱量子力学纯度进行建模。所考虑的光子对产生方案利用泵浦脉冲走离来产生纯预告光子,并且通过少模二氧化硅阶跃折射率光纤中不同空间模式的色散特性实现相位匹配。我们表明,光纤芯半径涨落通常会严重影响单光子纯度。此外,通过优化光纤设计我们表明,即使存在大的芯半径涨落,产生具有非常高光谱纯度的单光子也是可行的。同时,通过将单光子频率与泵浦频率分隔超过32太赫兹,自发拉曼散射的污染会大大减轻。

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