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CW-laser-pumped telecom-band polarization-entangled photon-pair source with a fidelity of 97.8

机译:连续波激光泵浦电信级偏振纠缠光子对源,保真度为97.8%

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Quantum entanglement is one of the most important resources for quantum communication, information and computing. Since active polarization stabilization methods could alleviate the polarization-drift problem over optical fibre [1,2], telecom-band polarization-entangled photon-pairs can be well distributed and shared. Spontaneous four-wave mixing in a dispersion-shifted fibre (DSF) can be used to realize a source of telecom-band polarization-entangled photon pairs, but DSF is often cooled to suppress noise photons generated by spontaneous Raman-scattering [3,4]. Second-order nonlinear crystals or waveguides such as periodically-poled lithium niobate (PPLN) waveguides are also available and generation has been reported on the conditions of careful selection of two nearly identical nonlinear crystals or accurate temperature-control of waveguides [5,6].
机译:量子纠缠是量子通信,信息和计算的最重要资源之一。由于有源偏振稳定方法可以缓解光纤上的偏振漂移问题[1,2],因此电信频段的偏振纠缠光子对可以很好地分布和共享。色散位移光纤(DSF)中的自发四波混合可用于实现电信频段偏振纠缠的光子对,但通常将其冷却以抑制由自发拉曼散射产生的噪声光子[3,4]。 ]。也可以使用二阶非线性晶体或波导,例如周期性极化的铌酸锂(PPLN)波导,并且在仔细选择两个几乎相同的非线性晶体或对波导进行精确温度控制的条件下,已经报道了产生[5,6]。 。

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