论文标题
从亚波长介质谐振器发出高谐波生成
High harmonic generation from a subwavelength dielectric resonator
论文作者
论文摘要
高阶光学谐波进入了最近在具有下波长厚度的光栅和跨侧面的纳米结构固体领域。在次波长度上的结构材料可以使非线性过程的效率共振并减少高谐波来源的大小。在这里,我们报告观察到由由藻类材料制成的单个亚波长的谐振器产生的第七个谐波。通过仔细的谐振器几何形状工程来支持与在λ=3.7μm泵波长的连续体中的准结合状态相关的光学模式,从而实现了此过程。谐振器体积测量〜0.1λ^3。谐振模式使用方位角极化紧密焦的光束激发。我们评估了扰动和非扰动非线性对谐波生成过程的贡献。我们的工作证明了将高谐波的固态源微型源到亚波量体积的可能性。
Higher-order optical harmonics entered the realm of nanostructured solids being observed recently in optical gratings and metasurfaces with a subwavelength thickness. Structuring materials at the subwavelength scale allows for resonant enhancing of the efficiency of nonlinear processes and reducing the size of high-harmonic sources. Here we report the observation of up to a seventh harmonic generated from a single subwavelength resonator made of AlGaAs material. This process is enabled by careful engineering of the resonator geometry for supporting optical modes associated with a quasi-bound state in the continuum in the mid-infrared spectral range at around λ=3.7 μm pump wavelength. The resonator volume measures ~ 0.1 λ^3. The resonant modes are excited with an azimuthally polarized tightly focused beam. We evaluate the contributions of perturbative and non-perturbative nonlinearities to the harmonic generation process. Our work proves the possibility to miniaturize solid-state sources of high harmonics to the subwavelength volumes.