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用快速电子束探测光学零模。

Probing optical anapoles with fast electron beams.

作者信息

Maciel-Escudero Carlos, Yankovich Andrew B, Munkhbat Battulga, Baranov Denis G, Hillenbrand Rainer, Olsson Eva, Aizpurua Javier, Shegai Timur O

机构信息

Materials Physics Center, CSIC-UPV/EHU, Paseo de Manuel Lardizabal, Donostia-San Sebastián, 20018, Spain.

CIC NanoGUNE BRTA and Department of Electricity and Electronics, Tolosa Hiribidea, Donostia-San Sebastián, 20018, Spain.

出版信息

Nat Commun. 2023 Dec 20;14(1):8478. doi: 10.1038/s41467-023-43813-y.

Abstract

Optical anapoles are intriguing charge-current distributions characterized by a strong suppression of electromagnetic radiation. They originate from the destructive interference of the radiation produced by electric and toroidal multipoles. Although anapoles in dielectric structures have been probed and mapped with a combination of near- and far-field optical techniques, their excitation using fast electron beams has not been explored so far. Here, we theoretically and experimentally analyze the excitation of optical anapoles in tungsten disulfide (WS) nanodisks using Electron Energy Loss Spectroscopy (EELS) in Scanning Transmission Electron Microscopy (STEM). We observe prominent dips in the electron energy loss spectra and associate them with the excitation of optical anapoles and anapole-exciton hybrids. We are able to map the anapoles excited in the WS nanodisks with subnanometer resolution and find that their excitation can be controlled by placing the electron beam at different positions on the nanodisk. Considering current research on the anapole phenomenon, we envision EELS in STEM to become a useful tool for accessing optical anapoles appearing in a variety of dielectric nanoresonators.

摘要

光学零极点是一种引人注目的电荷 - 电流分布,其特征是对电磁辐射有强烈抑制作用。它们源于电多极子和环形多极子产生的辐射的相消干涉。尽管介电结构中的零极点已通过近场和远场光学技术的组合进行了探测和映射,但到目前为止,尚未探索使用快速电子束对其进行激发。在此,我们通过扫描透射电子显微镜(STEM)中的电子能量损失谱(EELS),从理论和实验上分析了二硫化钨(WS)纳米盘中光学零极点的激发情况。我们在电子能量损失谱中观察到明显的下降,并将其与光学零极点和零极点 - 激子混合体的激发联系起来。我们能够以亚纳米分辨率绘制出WS纳米盘中激发的零极点,并发现通过将电子束放置在纳米盘上的不同位置,可以控制它们的激发。考虑到当前关于零极点现象的研究,我们设想STEM中的EELS将成为一种有用的工具,用于研究各种介电纳米谐振器中出现的光学零极点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfbe/10733292/43ecbd91074f/41467_2023_43813_Fig1_HTML.jpg

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