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Giant nonlinear response at a plasmonic nanofocus drives efficient four-wave mixing

机译:等离子体纳米焦点的巨大非线性响应驱动有效的四波混频

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摘要

Efficient optical frequency mixing typically must accumulate over large interaction lengths because nonlinear responses in natural materials are inherently weak. This limits the efficiency of mixing processes owing to the requirement of phase matching. Here, we report efficient four-wave mixing (FWM) over micrometer-scale interaction lengths at telecommunications wavelengths on silicon. We used an integrated plasmonic gap waveguide that strongly confines light within a nonlinear organic polymer. The gap waveguide intensifies light by nanofocusing it to a mode cross-section of a few tens of nanometers, thus generating a nonlinear response so strong that efficient FWM accumulates over wavelength-scale distances. This technique opens up nonlinear optics to a regime of relaxed phase matching, with the possibility of compact, broadband, and efficient frequency mixing integrated with silicon photonics.
机译:有效的光混频通常必须在较大的相互作用长度上累积,因为天然材料中的非线性响应固有地较弱。由于相位匹配的要求,这限制了混合过程的效率。在这里,我们报告了在硅上的电信波长下,微米级相互作用长度上有效的四波混频(FWM)。我们使用了集成的等离激元间隙波导,可将光严格限制在非线性有机聚合物内。间隙波导通过将光纳米聚焦到几十纳米的模式横截面来增强光,从而产生非常强的非线性响应,以至于有效的FWM会在波长范围内累积。这项技术使非线性光学器件可以实现轻松的相位匹配,并具有与硅光子集成在一起的紧凑,宽带和高效混频的可能性。

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