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用于产生和聚焦自由电子辐射的柱面超构透镜

Cylindrical Metalens for Generation and Focusing of Free-Electron Radiation.

作者信息

Karnieli Aviv, Roitman Dolev, Liebtrau Matthias, Tsesses Shai, Van Nielen Nika, Kaminer Ido, Arie Ady, Polman Albert

机构信息

Raymond and Beverly Sackler School of Physics and Astronomy, Tel Aviv University, Tel Aviv 69978, Israel.

Center for Nanophotonics, NWO-Institute AMOLF, Science Park 104, 1098 XG Amsterdam, The Netherlands.

出版信息

Nano Lett. 2022 Jul 27;22(14):5641-5650. doi: 10.1021/acs.nanolett.1c04556. Epub 2022 Jul 5.

Abstract

Metasurfaces constitute a powerful approach to generate and control light by engineering optical material properties at the subwavelength scale. Recently, this concept was applied to manipulate free-electron radiation phenomena, rendering versatile light sources with unique functionalities. In this Letter, we experimentally demonstrate spectral and angular control over coherent light emission by metasurfaces that interact with free-electrons under grazing incidence. Specifically, we study metalenses based on chirped metagratings that simultaneously emit and shape Smith-Purcell radiation in the visible and near-infrared spectral regime. In good agreement with theory, we observe the far-field signatures of strongly convergent and divergent cylindrical radiation wavefronts using hyperspectral angle-resolved light detection in a scanning electron microscope. Furthermore, we theoretically explore simultaneous control over the polarization and wavefront of Smith-Purcell radiation via a split-ring-resonator metasurface, enabling tunable operation by spatially selective mode excitation at nanometer resolution. Our work highlights the potential of merging metasurfaces with free-electron excitations for versatile and highly tunable radiation sources in wide-ranging spectral regimes.

摘要

超表面是一种通过在亚波长尺度上设计光学材料特性来产生和控制光的强大方法。最近,这一概念被应用于操纵自由电子辐射现象,从而产生具有独特功能的多功能光源。在本信函中,我们通过实验展示了超表面在掠入射下与自由电子相互作用时对相干光发射的光谱和角度控制。具体而言,我们研究了基于啁啾超光栅的金属透镜,该金属透镜在可见光和近红外光谱范围内同时发射并塑造史密斯-珀塞尔辐射。与理论高度吻合,我们在扫描电子显微镜中使用高光谱角分辨光探测观察到了强收敛和发散圆柱辐射波前的远场特征。此外,我们从理论上探索了通过分裂环谐振器超表面对史密斯-珀塞尔辐射的偏振和波前进行同时控制,从而能够通过纳米分辨率的空间选择性模式激发实现可调谐操作。我们的工作突出了将超表面与自由电子激发相结合以在广泛光谱范围内实现多功能且高度可调谐辐射源的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dda1/9335868/ee79112cf836/nl1c04556_0001.jpg

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