论文标题

宽带的逆设计,强耦合的丛序非线性跨膜

Inverse design of broadband, strongly-coupled plexcitonic nonlinear metasurfaces

论文作者

Blechman, Yael, Tsesses, Shai, Bartal, Guy, Almeida, Euclides

论文摘要

等离子元面积的混合光子结构与原子上薄的半导体结合起来已成为一个多功能平台,用于强烈的轻度互动,支持强耦合和参数性非线性。然而,设计优化的非线性混合元图是一项复杂的任务,因为多个参数对非线性响应的贡献是难以捉摸的。在这里,我们提出了一种简单而强大的策略,用于基于基于元图频率的元图近场增强的进化反向设计,最大化混合结构的非线性响应。我们表明,强耦合极大地增强了非线性信号,并且其幅度主要取决于狂犬分裂,从而使其对元图的几何变化稳健。此外,这些混合结构获得的大型狂犬分裂使宽带操作可以在杂交模式的频率上进行。我们的结果构成了实现灵活的非线性控制的重要一步,该控制可以使非线性频率转换,全光开关和相机非线性非线性跨曲面中的应用有益。

Hybrid photonic structures of plasmonic metasurfaces coupled to atomically thin semiconductors have emerged as a versatile platform for strong light-matter interaction, supporting both strong coupling and parametric nonlinearities. However, designing optimized nonlinear hybrid metasurfaces is a complex task, as the multiple parameters' contribution to the nonlinear response is elusive. Here we present a simple yet powerful strategy for maximizing the nonlinear response of the hybrid structures based on evolutionary inverse design of the metasurface's near-field enhancement around the excitonic frequency. We show that the strong coupling greatly enhances the nonlinear signal, and that its magnitude is mainly determined by the Rabi splitting, making it robust to geometrical variations of the metasurface. Furthermore, the large Rabi splitting attained by these hybrid structures enables broadband operation over the frequencies of the hybridized modes. Our results constitute a significant step towards achieving flexible nonlinear control, which can benefit applications in nonlinear frequency conversion, all-optical switching, and phase-controlled nonlinear metasurfaces.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源