论文标题

纳米结构硅中的Anapole介导的巨热非线性

Anapole mediated giant photothermal nonlinearity in nanostructured silicon

论文作者

Zhang, Tianyue, Che, Ying, Chen, Kai, Xu, Jian, Xu, Yi, Wen, Te, Lu, Guowei, Liu, Xiaowei, Wang, Bin, Xu, Xiaoxuan, Duh, Yi-Shiou, Tang, Yu-Lung, Han, Jing, Cao, Yaoyu, Guan, Bai-Ou, Chu, Shi-Wei, Li, Xiangping

论文摘要

高索引介电纳米结构具有大量的电气和磁性MIE共振,提供了一个多功能平台,可在纳米级的浓缩光 - 物质相互作用。通过整合远场散射控制的独特特征和来自辐射无辐射式态态的近场浓度,在这里,我们证明了单个亚波长度大小的硅纳米虫的巨大光热非线性。纳米级的能量浓度以及由Anapole模式介导的近场增强功能产生可逆的非线性散射,具有较大的调制深度和广泛的动态范围,在MW/CM2的阶面上揭示了记录的最高非线性指数在轻度入射光强度下最高0.5。观察到的光热非线性与非结构化的散装硅相比,展示了三个数量级增强的阶,以及通过辐射电偶极模式高的几乎一个数量级。这种非线性散射可以在共聚焦反射成像中赋予独特的点扩散功能,从而提供了纳米结构SI的远场定位的潜力,其精度接近40 nm。我们的发现为基于光学葡萄干的活性硅光子学提供了新的灯光。

Featured with a plethora of electric and magnetic Mie resonances, high index dielectric nanostructures offer a versatile platform to concentrate light-matter interactions at the nanoscale. By integrating unique features of far-field scattering control and near-field concentration from radiationless anapole states, here, we demonstrate a giant photothermal nonlinearity in single subwavelength-sized silicon nanodisks. The nanoscale energy concentration and consequent near-field enhancements mediated by the anapole mode yield a reversible nonlinear scattering with a large modulation depth and a broad dynamic range, unveiling a record-high nonlinear index change up to 0.5 at mild incident light intensities on the order of MW/cm2. The observed photothermal nonlinearity showcases three orders of magnitude enhancement compared with that of unstructured bulk silicon, as well as nearly one order of magnitude higher than that through the radiative electric dipolar mode. Such nonlinear scattering can empower distinctive point spread functions in confocal reflectance imaging, offering the potential for far-field localization of nanostructured Si with an accuracy approaching 40 nm. Our findings shed new light on active silicon photonics based on optical anapoles.

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