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Demonstration of spectral correlation control in a source of polarization-entangled photon pairs at telecom wavelength

机译:在电信波长的偏振纠缠光子对源中进行光谱相关控制的演示

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摘要

Spectrally correlated photon pairs can be used to improve the performance of long-range fiber-based quantum communication protocols. We present a source based on spontaneous parametric downconversion, which allows one to control spectral correlations within the entangled photon pair without spectral filtering by changing the pump-pulse duration or the characteristics of the coupled spatial modes. The spectral correlations and polarization entanglement are characterized. We find that the generated photon pairs can feature both positive spectral correlations, decorrelation, or negative correlations at the same time as polarization entanglement with a high fidelity of 0.97 (no background subtraction) with the expected Bell state.
机译:光谱相关的光子对可用于提高基于远程光纤的量子通信协议的性能。我们提出了一种基于自发参数下变频的光源,该光源可以通过改变泵浦脉冲持续时间或耦合空间模式的特性来控制纠缠光子对内的光谱相关性,而无需进行光谱滤波。表征光谱相关性和偏振纠缠。我们发现,生成的光子对可以同时具有正谱相关性,去相关性或负相关性,并且偏振纠缠的保真度为0.97(没有背景减法),保真度为贝尔状态。

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