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Transition metal dichalcogenide nanodisks as high-index dielectric Mie nanoresonators

机译:过渡金属二甲基化物纳米纳米DIEN DIE纳米管

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Monolayer transition metal dichalcogenides (TMDCs) have recently been proposed as an excitonic platform for advanced optical and electronic functionalities(1-3). However, in spite of intense research efforts, it has not been widely appreciated that TMDCs also possess a high refractive index(4,5). This characteristic opens up the possibility to utilize them to construct resonant nanoantennas based on subwavelength geometrical modes(6,7). Here, we show that nanodisks, fabricated from exfoliated multilayer WS2, support distinct Mie resonances and anapole states(8) that can be tuned in wavelength over the visible and near-infrared range by varying the nanodisk size and aspect ratio. As a proof of concept, we demonstrate a novel regime of light-matter interaction-anapole-exciton polaritons-which we realize within a single WS2 nanodisk. We argue that the TMDC material anisotropy and the presence of excitons enrich traditional nanophotonics approaches based on conventional high-index materials and/or plasmonics.
机译:最近提出了单层过渡金属二甲硅藻(TMDC)作为高级光学和电子功能的激发平台(1-3)。然而,尽管有激烈的研究努力,但尚未得到普遍认为TMDC也具有高折射率(4,5)。该特性使利用它们基于亚壳的几何模式(6,7)来利用它们来构建谐振纳米环节。这里,我们表明,由剥离的多层WS2制成的纳米噪声,支持不同的MIE共振和anaphole状态(8),其可以通过改变纳米磁盘尺寸和纵横比在可见光和近红外范围内调谐。作为概念的证据,我们展示了一种新颖的浅品相相互作用 - Anapole-Exciton极性官 - 我们在单个WS2纳米芯片内实现。我们认为TMDC材料各向异性和激子的存在基于常规的高指数材料和/或血浆来丰富传统的纳米级洋光源性方法。

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