论文标题

探测MIE纳米装饰物与原子较薄的半导体的光学近场相互作用

Probing the optical near-field interaction of Mie nanoresonators with atomically thin semiconductors

论文作者

Estrada-Real, Ana, Paradisanos, Ioannis, Wiecha, Peter R., Poumirol, Jean-Marie, Cuche, Aurelien, Agez, Gonzague, Lagarde, Delphine, Marie, Xavier, Larrey, Vincent, Müller, Jonas, Larrieu, Guilhem, Paillard, Vincent, Urbaszek, Bernhard

论文摘要

基于硅纳米结构的光学MIE谐振器允许基于CMOS兼容纳米化的高级设计概念来调整光线相互作用。可以将光活性的材料(例如过渡金属二甲藻元化(TMD)单层)放置在此类MIE谐振器的近场区域。在这里,我们通过在Mose2单层与介电纳米孔子近场之间的数值模拟进行实验证明和验证。通过比较暗场(DF)散射光谱和光致发光激发实验(PLE),我们表明可以通过纳米器的近场增强Mose2吸收。我们通过单个MIE谐振器的几何形状来证明吸收的光谱调节。我们表明,与DF散射中的远场共振相比,我们确实通过测量PLE典型的近场共振之间的光谱移动来访问纳米孔子的光学近场。我们的结果证明,使用Mose2作为主动探针允许在光子纳米结构上方访问光学近场,而无需高度复杂的近场显微镜设备。

Optical Mie resonators based on silicon nanostructures allow tuning of light-matter-interaction with advanced design concepts based on CMOS compatible nanofabrication. Optically active materials such as transition-metal dichalcogenide (TMD) monolayers can be placed in the near-field region of such Mie resonators. Here, we experimentally demonstrate and verify by numerical simulations coupling between a MoSe2 monolayer and the near-field of dielectric nanoresonators. Through a comparison of dark-field (DF) scattering spectroscopy and photoluminescence excitation experiments (PLE), we show that the MoSe2 absorption can be enhanced via the near-field of a nanoresonator. We demonstrate spectral tuning of the absorption via the geometry of individual Mie resonators. We show that we indeed access the optical near-field of the nanoresonators, by measuring a spectral shift between the typical near-field resonances in PLE compared to the far-field resonances in DF scattering. Our results prove that using MoSe2 as an active probe allows accessing the optical near-field above photonic nanostructures, without the requirement of highly complex near-field microscopy equipment.

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