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Generation of frequency de-correlated photon pairs by using photonic crystal fiber

机译:使用光子晶体纤维产生频率去相关的光子对

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Based on the dispersion property of a given photonic crystal fiber (PCF), we study how to directly generate frequency de-correlated photon pairs via pulse pumped spontaneous four wave mixing from both the theoretical and experimental aspects. The numerical investigation shows that to generated the frequency de-correlated photon pairs, the experimental parameters should be properly optimized by balancing the influences of the high order dispersion and the intrinsic sinc oscillation of phase matching function, apart from the satisfaction of specified phase matching condition and the usage of transform limited pump pulses. We also conduct experiment to verify the numerical simulations, and the experimental results qualitatively agree with the calculations. For the filter free case, the experimentally obtained maximum g(2) of the individual signal photons is 1.76 ± 0.02. When this kind of photon pairs is used to realize the heralded single photons, the heralding efficiency can reach 86%.
机译:基于给定光子晶体纤维(PCF)的分散性质,我们研究了如何通过脉冲泵浦自发四波混合直接产生频率去相关的光子对,从理性和实验方面。数值研究表明,为了产生频率去相关的光子对,应通过平衡高阶分散的影响和相位匹配功能的内在校主振荡来适当优化实验参数,除了指定相位匹配条件之外以及变换有限泵脉冲的用法。我们还进行实验以验证数值模拟,实验结果定性地同意计算。对于无滤波器的情况,各个信号光子的实验最大G(2)为1.76±0.02。当使用这种光子对来实现预示着的单个光子时,覆盖效率可以达到86%。

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