硅光子学
CMOS芯片
光子学
光参量放大器
绝缘体上的硅
光电子学
硅
材料科学
放大器
光放大器
参数统计
电子工程
物理
光学
工程类
激光器
统计
数学
作者
David Heydari,Mircea Cătuneanu,Edwin Ng,Dodd Gray,Ryan Hamerly,Jatadhari Mishra,Marc Jankowski,M. M. Fejer,Kambiz Jamshidi,Hideo Mabuchi
出处
期刊:Optica
[Optica Publishing Group]
日期:2023-03-23
卷期号:10 (4): 430-430
被引量:2
标识
DOI:10.1364/optica.478702
摘要
Silicon is a common material for photonics due to its favorable optical properties in the telecom and mid-wave IR bands, as well as compatibility with a wide range of complementary metal–oxide semiconductor (CMOS) foundry processes. Crystalline inversion symmetry precludes silicon from natively exhibiting second-order nonlinear optical processes. In this work, we build on recent works in silicon photonics that break this material symmetry using large bias fields, thereby enabling χ (2) interactions. Using this approach, we demonstrate both second-harmonic generation (with a normalized efficiency of 0.20%W −1 cm −2 ) and, to our knowledge, the first degenerate χ (2) optical parametric amplifier (with an estimated normalized gain of 0.6dBW −1/2 cm −1 ) using silicon-on-insulator waveguides fabricated in a CMOS-compatible commercial foundry. We expect this technology to enable the integration of novel nonlinear optical devices such as optical parametric amplifiers, oscillators, and frequency converters into large-scale, hybrid photonic–electronic systems by leveraging the extensive ecosystem of CMOS fabrication.
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