Li Xiaoying, Chen Jun, Voss Paul, Sharping Jay, Kumar Prem
Opt Express. 2004 Aug 9;12(16):3737-44. doi: 10.1364/opex.12.003737.
We demonstrate greatly improved results for the production of correlated photon-pairs using the four-photon scattering process in silica fiber. We achieve a true-coincidence-count to accidental-coincidence-count ratio greater than 10, when the photon-pair production rate is about 0.04 /pulse. This represents a four-fold improvement over our previous results. The contribution of spontaneous Raman scattering, the primary cause of uncorrelated photons that degrades the fidelity of this source, is reduced by decreasing the wavelength detuning between the correlated photons and the pump photons and by using polarizers to remove the cross-polarized Raman-scattered photons. Excess Raman scattering could be further suppressed by cooling the silica fiber. Even without cooling the fiber, the achieved 10 to 1 ratio of true-coincidence to accidental-coincidence makes the fiber source of correlated photon-pairs a useful tool for realizing various quantum-communication protocols.
我们展示了在石英光纤中使用四光子散射过程产生关联光子对时取得的显著改进结果。当光子对产生率约为0.04/脉冲时,我们实现了真符合计数与偶然符合计数之比大于10。这比我们之前的结果提高了四倍。通过减小关联光子与泵浦光子之间的波长失谐,并使用偏振器去除交叉偏振的拉曼散射光子,降低了自发拉曼散射的贡献,自发拉曼散射是产生不相关光子从而降低该光源保真度的主要原因。冷却石英光纤可以进一步抑制过量的拉曼散射。即使不冷却光纤,所实现的真符合与偶然符合10比1的比例也使关联光子对的光纤光源成为实现各种量子通信协议的有用工具。