论文标题

光学谐振全dielectric diabolo纳米风险

Optically resonant all-dielectric diabolo nanodisks

论文作者

Gafsi, Saddam, Tarik, Farhan Bin, Nelson, Cody T., Ryckman, Judson D.

论文摘要

与等离子的纳米结构相比,光学共振的全丝纳米结构具有吸引力的损失。但是,在纳米级,尤其是固态媒体中实现强大的领域增强功能仍然是一个重大挑战。在这项工作中,我们证明了对常规硅纳米界的次波长修改如何在支持类似Anapole的模式的设备中实现强大的亚差异和极化依赖性场的增强。我们检查了个体和阵列的diabolo纳米风险的电磁特性,这些纳米磁虫均显示出| e | e | $^2 $/| e $ _0 $ | $ | $ | $ | $^2 $增强功能〜10 $^2 $ -10 $^4 $,在高指数培养基中,根据地球次数的考虑。除了支持与Diabolo纳米结构的光子晶体腔和波导设计相似的局部电场热点外,我们还确定了抗二叠纤维效应,从而导致正交极化的宽带冷点。这些发现提供了增强或操纵纳米级的光结合相互作用的前景,以用于从非线性光学元件到量子光源,纳米感应,纳米粒子操纵和活动/可调/可调/可调式元信息的潜在应用。

Optically resonant all-dielectric nanostructures attractively exhibit reduced losses compared to their plasmonic counterparts; however, achieving strong field enhancements at the nanoscale, especially within solid-state media, has remained a significant challenge. In this work, we demonstrate how subwavelength modifications to a conventional silicon nanodisk enable strong sub-diffractive and polarization dependent field enhancements in devices supporting anapole-like modes. We examine the electromagnetic properties of both individual and arrayed diabolo nanodisks, which are found to exhibit |E|$^2$/|E$_0$|$^2$ enhancements in the range ~10$^2$-10$^4$, in the high index medium, depending on geometrical considerations. In addition to supporting a localized electric field hot-spot similar to those predicted in diabolo nanostructured photonic crystal cavities and waveguide designs, we identify an anti-diabolo effect leading to a broadband cold-spot for the orthogonal polarization. These findings offer the prospect of enhancing or manipulating light-matter interactions at the nanoscale within an all-dielectric (metal free) platform for potential applications ranging from nonlinear optics to quantum light sources, nano-sensing, nanoparticle-manipulation and active/tunable metasurfaces.

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