论文标题
将对称的耦合器引入介电元表面启用连续和有效的非线性频率转换的强大高Q Quasibound状态
Introducing a Symmetry-Breaking Coupler into a Dielectric Metasurface Enables Robust High-Q Quasibound States in the Continuum and Efficient Nonlinear Frequency Conversion
论文作者
论文摘要
连续体(Quasi-BICS)支持准结合状态的电介质元面积表现出很高的质量因子共振和电场限制。但是,访问准BIC制度的高Q端通常需要从BIC条件中略微扭曲元图设计,从而将所需的纳米级制造精度推向极限。这项工作介绍了一个新的概念,用于产生高Q Quasi-BIC,该概念通过将相对较大的扰动元件纳入接近未呈现的BIC元图的高对称点,充当辐射连续体的耦合器,从而强烈放松了这一要求。我们通过在椭圆磁盘跨表面元单元中以300 nm间隙隔开的两个反射对称点之间添加$ \ sim $ \ sim $ 100 nm的直径圆柱体,使用磷化甲磷脂作为介电。我们发现,当圆柱耦合器放置在此类对称点之间的任何位置时,高Q共振出现。我们进一步探讨了该元图在光学范围内的第二个谐波生成能力。从BIC条件中取代耦合器的全直径尽可能多地产生纪录的归一化转换效率> 10 $^{2} $ W $^{ - 1} $。可以在许多几何设计中构建强大的高Q Quasi-BICS封闭多个高对称点之间的破坏性元素的策略。
Dielectric metasurfaces supporting quasi-bound states in the continuum (quasi-BICs) exhibit very high quality factor resonances and electric field confinement. However, accessing the high-Q end of the quasi-BIC regime usually requires marginally distorting the metasurface design from a BIC condition, pushing the needed nanoscale fabrication precision to the limit. This work introduces a novel concept for generating high-Q quasi-BICs, which strongly relaxes this requirement by incorporating a relatively large perturbative element close to high-symmetry points of an undistorted BIC metasurface, acting as a coupler to the radiation continuum. We validate this approach by adding a $\sim$100 nm diameter cylinder between two reflection-symmetry points separated by a 300 nm gap in an elliptical disk metasurface unit cell, using gallium phosphide as the dielectric. We find that high-Q resonances emerge when the cylindrical coupler is placed at any position between such symmetry points. We further explore this metasurface's second harmonic generation capability in the optical range. Displacing the coupler as much as a full diameter from a BIC condition produces record-breaking normalized conversion efficiencies >10$^{2}$ W$^{-1}$. The strategy of enclosing a disruptive element between multiple high-symmetry points in a BIC metasurface could be applied to construct robust high-Q quasi-BICs in many geometrical designs.