利用低损耗 3D 边缘耦合器提高氮化硅中相关光子对的生成效率

APL Photonics Pub Date : 2024-06-01 DOI:10.1063/5.0198693
Xiaotian Zhu, Chang-Xin Wang, B. E. Little, Z. Ou, S. Chu, L. Cui, Xiaoying Li
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引用次数: 0

摘要

我们利用混合集成量子光子平台演示了相关光子对的产生,该平台的双层结构包括用于容纳低损耗线性元件的高指数掺杂硅玻璃(HDSG)层和用于容纳光子源的氮化硅(SiN)层。利用与 HDSG 波导耦合的低损耗光纤和 SiN 波导的高非线性,我们在实验中实现了具有高预示效率的集成光子对源。当巧合-偶然比大于 10 时,直接测量到的光子对速率高达 87 KHz(相当于每个脉冲 1.74 × 10-3 对)。原始预示效率可达 18%。如果不考虑滤波损耗,预示效率可进一步达到 29%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced efficiency of correlated photon pairs generation in silicon nitride with a low-loss 3D edge coupler
We demonstrate the generation of correlated photon pairs by using a hybrid integrated quantum photonic platform, where the dual-layer platform consists of a high-index doped silica glass (HDSG) layer to accommodate low-loss linear components and an SiN-based layer to accommodate the photon source. Leveraging the low-loss fiber coupling to the HDSG waveguide and the high nonlinearity of the SiN waveguide, we experimentally realize integrated source of photon pairs with high heralding efficiency. The directly measured photon pair rate is up to 87 KHz (corresponding to 1.74 × 10−3 pairs per pulse) when the coincidence-to-accidental ratio is greater than 10. The raw heralding efficiency can reach 18%. If the filtering loss is excluded, the heralding efficiency can further reach 29%.
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