Ren Qun, You Jian Wei, Panoiu Nicolae C
Opt Express. 2018 Nov 12;26(23):30383-30392. doi: 10.1364/OE.26.030383.
We demonstrate that stimulated Raman amplification can be enhanced by more than four orders of magnitude in a silicon metasurface consisting of a periodic distribution of specially engineered photonic crystal (PhC) cavities in a silicon PhC slab waveguide. In particular, by designing the PhC cavities so as they possess two optical modes separated by the Raman frequency of silicon, one can achieve large optical field enhancement at both the pump and Stokes frequencies. As a consequence, the effective Raman susceptibility of the nonlinear metasurface, calculated using a novel homogenization technique, is significantly larger than the intrinsic Raman susceptibility of silicon. Implications to technological applications of our theoretical study are discussed, too.
我们证明,在由硅光子晶体(PhC)平板波导中特殊设计的光子晶体(PhC)腔的周期性分布组成的硅超表面中,受激拉曼放大可以增强四个数量级以上。特别是,通过设计PhC腔使其具有两个被硅的拉曼频率隔开的光学模式,人们可以在泵浦频率和斯托克斯频率处都实现大的光场增强。因此,使用一种新颖的均匀化技术计算得到的非线性超表面的有效拉曼极化率显著大于硅的固有拉曼极化率。我们还讨论了理论研究对技术应用的影响。