论文标题
外部驱动的非线性时间变化的元信息
Externally driven nonlinear time-variant metasurfaces
论文作者
论文摘要
具有增强的非线性响应和有效频率转换的共振光子纳米结构是非线性光学元件的新兴平台。具有迅速调谐的高Q共振的高索引半导体元信息可以使一类新型的时间变化的元时间延伸,从而扩展了纳米级的颜色管理工具箱。在这里,我们报告了在近红外光谱范围内支持高质量因子共振的时间变化的半导体跨空面中非线性光学响应的动态控制。负泵探针时间延迟在负泵浦探针时间延迟下的泵探针测量结果显示,基本光束中的频率转换为10〜nm(3.05 $ω$),并且由于照片诱导的时间触发时间变化剂的折射率而在第三次谐波信号中扩大了40%。与实验数据非常吻合的时间依赖性耦合模式理论验证了系统的时间变化性质。我们的发现扩大了时间变化的元时间范围,可以作为下一代纳米级脉冲塑料,光学开关和光源的基础。
Resonant photonic nanostructures exhibiting enhanced nonlinear responses and efficient frequency conversion are an emergent platform in nonlinear optics. High-index semiconductor metasurfaces with rapidly tuned high-Q resonances enable a novel class of time-variant metasurfaces, which expands the toolbox of color management at the nanoscale. Here, we report on the dynamic control of the nonlinear optical response in time-variant semiconductor metasurfaces supporting high-quality factor resonances in the near-infrared spectral range. Pump-probe measurements of germanium metasurfaces at negative pump-probe time delays reveals frequency conversion in the fundamental beam and a blue-shift of 10~nm (3.05$ω$) and 40% broadening in the third harmonic signal due to the photoinduced time-variant refractive index. A time-dependent coupled-mode theory, in excellent agreement with the experimental data, validated the time-variant nature of the system. Our findings expand the scope of time-variant metasurfaces and may serve as base for the next generation of nanoscale pulse shapers, optical switches and light sources.