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利用电子束揭示纳米尺度限制对双曲声子极化激元的影响。

Revealing Nanoscale Confinement Effects on Hyperbolic Phonon Polaritons with an Electron Beam.

作者信息

Konečná Andrea, Li Jiahan, Edgar James H, García de Abajo F Javier, Hachtel Jordan A

机构信息

ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, Castelldefels, Barcelona, 08860, Spain.

Central European Institute of Technology, Brno University of Technology, Brno, 612 00, Czech Republic.

出版信息

Small. 2021 Oct;17(39):e2103404. doi: 10.1002/smll.202103404. Epub 2021 Aug 28.

Abstract

Hyperbolic phonon polaritons (HPhPs) in hexagonal boron nitride (hBN) enable the direct manipulation of mid-infrared light at nanometer scales, many orders of magnitude below the free-space light wavelength. High-resolution monochromated electron energy-loss spectroscopy (EELS) facilitates measurement of excitations with energies extending into the mid-infrared while maintaining nanoscale spatial resolution, making it ideal for detecting HPhPs. The electron beam is a precise source and probe of HPhPs, which allows the observation of nanoscale confinement in HPhP structures and directly extract hBN polariton dispersions for both modes in the bulk of the flake and modes along the edge. The measurements reveal technologically important nontrivial phenomena, such as localized polaritons induced by environmental heterogeneity, enhanced and suppressed excitation due to 2D interference, and strong modification of high-momenta excitations such as edge-confined polaritons by nanoscale heterogeneity on edge boundaries. The work opens exciting prospects for the design of real-world optical mid-infrared devices based on hyperbolic polaritons.

摘要

六方氮化硼(hBN)中的双曲线型声子极化激元(HPhPs)能够在纳米尺度上直接操控中红外光,其尺度比自由空间光波长小许多个数量级。高分辨率单色电子能量损失谱(EELS)有助于测量能量延伸至中红外的激发,同时保持纳米级空间分辨率,使其成为检测HPhPs的理想手段。电子束是HPhPs的精确源和探测器,这使得能够观察HPhP结构中的纳米级限制,并直接提取薄片主体中两种模式以及沿边缘模式的hBN极化激元色散。这些测量揭示了技术上重要的非平凡现象,例如由环境异质性诱导的局域极化激元、二维干涉导致的激发增强和抑制,以及边缘边界上的纳米级异质性对诸如边缘限制极化激元等高动量激发的强烈调制。这项工作为基于双曲线型极化激元的实际光学中红外器件设计开辟了令人兴奋的前景。

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