论文标题

在异质硅光子芯片中产生的光子对生成

Photon-pair generation in a heterogeneous silicon photonic chip

论文作者

Jin, Mingwei, MacFarlane, Neil, Ma, Zhaohui, Sua, Yongmeng, Foster, Mark A., Huang, Yuping, Foster, Amy C.

论文摘要

综合硅光子学在推进量子信息和量子科学的应用中发挥了重要作用。但是,由于材料特性的不同,将所有组件与基于均匀材料的出色性能相结合是一项挑战。在这里,通过在异质硅平台中结合高非线性和低损失,我们通过在氢化的无定形硅波导中通过自发的四波混合有效地产生高质量的光子对,并将它们通过低损失硅的芯片将其伸向芯片。在这种异质设计中,实现了创纪录的高巧合 - 意外率为1632.6($ \ pm $ 260.4),光子对生成速率为1.94 MHz。我们还展示了各种偶然的多渠道光子源,偶然的速率始终在200时。最后,我们测量了最低$ g^{(2)} _ H(2)_ H(0)$ 0.1085 $ \ $ \ pm $ $ \ pm $ 0.0014。我们的结果表明,异质的硅平台是有效地生成光子对并以低损失的芯片将其路由的理想平台。它还通过从不同材料中收集不同特征来为未来的混合光子集成电路铺平了一种方法。

Integrated Silicon photonics has played an important role in advancing the applications of quantum information and quantum science. However, due to different material properties, it is challenging to integrate all components with excellent performance based on homogeneous material. Here, by combining high nonlinearity and low losses in a heterogeneous silicon platform, we efficiently generate high-quality photon pairs through spontaneous four-wave mixing in hydrogenated amorphous silicon waveguide and route them off-chip through low loss silicon nitride waveguide. A record high coincidence- to- accidental rate value of 1632.6 ($\pm$ 260.4) is achieved in this heterogeneous design with a photon pair generation rate of 1.94 MHz. We also showcase a wide range of multi-channel photon sources with coincidence- to- accidental rate consistently at 200. Lastly, we measure heralded single-photons with a lowest $g^{(2)}_H(0)$ of 0.1085 $\pm$ 0.0014. Our results demonstrate the heterogeneous silicon platform as an ideal platform for efficient generation of photon pairs and routing them off-chip with low losses. It also paves a way for the future hybrid photonic integrated circuit by collecting distinct features from different materials.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源