论文标题

硅光子学中有效的照片诱导的第二次谐波产生

Efficient photo-induced second harmonic generation in silicon photonics

论文作者

Lu, Xiyuan, Moille, Gregory, Rao, Ashutosh, Westly, Daron, Srinivasan, Kartik

论文摘要

硅光子学通常缺乏二阶非线性光学响应,因为典型的组成材料是质子对称的,并且缺乏反转对称性,这禁止二阶非线性过程,例如第二次谐波产生(SHG)。在这里,我们首次通过将强大的光诱导有效的二阶非线性与谐振剂增强和完美相匹配相结合,在基于硅的光学微孔子中实现了有效的SHG。我们显示的最高转化效率为2,500%/w,比以前的工作大2到4个数量级。特别是,我们的设备以> 20%的功率转换效率来实现MW级SHG输出功率。该演示是在实现硅光子学中有效的二阶非线性过程方面的一个重大突破,并为综合Kerr频率梳集成了紧凑的光学频率合成和光学时钟技术的自我引用铺平了道路。

Silicon photonics lacks a second-order nonlinear optical response in general because the typical constituent materials are centro-symmetric and lack inversion symmetry, which prohibits second-order nonlinear processes such as second harmonic generation (SHG). Here, for the first time, we realize efficient SHG in a silicon-based optical microresonator by combining a strong photo-induced effective second-order nonlinearity with resonant enhancement and perfect-phase matching. We show a record-high conversion efficiency of 2,500 %/W, which is 2 to 4 orders of magnitude larger than previous works. In particular, our devices realize mW-level SHG output powers with > 20 % power conversion efficiency. This demonstration is a major breakthrough in realizing efficient second-order nonlinear processes in silicon photonics, and paves the way for integrated self-referencing of Kerr frequency combs for compact optical frequency synthesis and optical clock technologies.

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