论文标题
硅纳米光子学中的光学参数振荡
Optical parametric oscillation in silicon carbide nanophotonics
论文作者
论文摘要
碳化硅(SIC)迅速成为实施非线性和量子光子学的领先平台。在这里,我们发现拥有各种自旋量子的商业SIC具有低光吸收,可以使SIC集成光子学具有超过$ 10^7 $的质量因素。我们制造的微孔谐振器具有高达110万的质量因子,并观察到低阈值(8.5 $ \ pm $ 0.5兆瓦)光学参数振荡以及跨度200 nm的光学微量启动。我们的演示是利用SIC的独特光学特性的光子设备开发的重要里程碑,为非线性光子学与基于自旋的量子技术的单片整合铺平了道路。
Silicon carbide (SiC) is rapidly emerging as a leading platform for the implementation of nonlinear and quantum photonics. Here, we find that commercial SiC, which hosts a variety of spin qubits, possesses low optical absorption that can enable SiC integrated photonics with quality factors exceeding $10^7$. We fabricate microring resonators with quality factors as high as 1.1 million, and observe low-threshold (8.5 $\pm$ 0.5 mW) optical parametric oscillation as well as optical microcombs spanning 200 nm. Our demonstration is an essential milestone in the development of photonic devices that harness the unique optical properties of SiC, paving the way toward the monolithic integration of nonlinear photonics with spin-based quantum technologies.