Hashimoto Yosuke, Goban Akihisa, Hirabayashi Yuki, Kobayashi Yuta, Araki Tomohiro, Aoki Takao
Opt Express. 2021 Feb 1;29(3):3533-3542. doi: 10.1364/OE.414037.
Microcavities with high Q factor and small mode volume have the potential to be efficient and compact sources of photon pairs. Here, we demonstrate on-chip photon-pair generation by spontaneous four-wave mixing in a silica microtoroidal cavity and obtain a coincidence-to-accidental ratio of 7.4 ± 0.1 with a pump power of 46 µW. The heralded photons also exhibit antibunching characterized by autocorrelation function values of (2)(0)=0.57±0.03<1. Comparing with a scaling model, the main noise source is found to be spontaneous Raman scattering in the cavity. This work opens a new possible means for realizing integrated nonclassical photon sources based on silica photonic circuits toward scalable quantum technologies.
具有高品质因数和小模式体积的微腔有潜力成为高效且紧凑的光子对源。在此,我们展示了在二氧化硅微环腔中通过自发四波混频实现片上光子对产生,并在46微瓦的泵浦功率下获得了7.4±0.1的符合与偶然比。所产生的光子还表现出反聚束特性,其自相关函数值为g(2)(0)=0.57±0.03<1。与一个标度模型相比,发现主要噪声源是腔内的自发拉曼散射。这项工作为基于二氧化硅光子电路实现集成非经典光子源以推动可扩展量子技术开辟了一种新的可能途径。