Kaneda Fumihiro, Garay-Palmett Karina, U'Ren Alfred B, Kwiat Paul G
Opt Express. 2016 May 16;24(10):10733-47. doi: 10.1364/OE.24.010733.
We report on the generation of an indistinguishable heralded single-photon state, using highly nondegenerate spontaneous parametric downconversion (SPDC). Spectrally factorable photon pairs can be generated by incorporating a broadband pump pulse and a group-velocity matching (GVM) condition in a periodically-poled potassium titanyl phosphate (PPKTP) crystal. The heralding photon is in the near IR, close to the peak detection efficiency of off-the-shelf Si single-photon detectors; meanwhile, the heralded photon is in the telecom L-band where fiber losses are at a minimum. We observe spectral factorability of the SPDC source and consequently high purity (90%) of the produced heralded single photons by several different techniques. Because this source can also realize a high heralding efficiency (> 90%), it would be suitable for time-multiplexing techniques, enabling a pseudo-deterministic single-photon source, a critical resource for optical quantum information and communication technology.
我们报道了利用高度非简并自发参量下转换(SPDC)产生不可区分的 heralded 单光子态。通过在周期性极化钛酸钡钾(PPKTP)晶体中引入宽带泵浦脉冲和群速度匹配(GVM)条件,可以产生光谱可分解的光子对。 heralding 光子处于近红外波段,接近市售硅单光子探测器的峰值探测效率;同时,被 heralded 的光子处于光纤损耗最小的电信 L 波段。我们通过几种不同技术观察到了 SPDC 源的光谱可分解性,从而产生了高纯度(90%)的 heralded 单光子。由于该源还能实现高 heralding 效率(>90%),因此适用于时分复用技术,可实现伪确定性单光子源,这是光量子信息和通信技术的关键资源。