首页> 中文期刊> 《光:科学与应用(英文版)》 >Magnetic plasmon resonances in nanostructured topological insulators for strongly enhanced light-MoS_(2) interactions

Magnetic plasmon resonances in nanostructured topological insulators for strongly enhanced light-MoS_(2) interactions

         

摘要

Magnetic resonances not only play crucial roles in artificial magnetic materials but also offer a promising way for light control and interaction with matter.Recently,magnetic resonance effects have attracted special attention in plasmonic systems for overcoming magnetic response saturation at high frequencies and realizing high-performance optical functionalities.As novel states of matter,topological insulators(TIs)present topologically protected conducting surfaces and insulating bulks in a broad optical range,providing new building blocks for plasmonics.However,until now,high-frequency(e.g.visible range)magnetic resonances and related applications have not been demonstrated in TI systems.Herein,we report for the first time,to our knowledge,a kind of visible range magnetic plasmon resonances(MPRs)in TI structures composed of nanofabricated Sb_(2)Te_(3) nanogrooves.The experimental results show that the MPR response can be tailored by adjusting the nanogroove height,width,and pitch,which agrees well with the simulations and theoretical calculations.Moreover,we innovatively integrated monolayer MoS_(2) onto a TI nanostructure and observed strongly reinforced light-MoS_(2) interactions induced by a significant MPR-induced electric field enhancement,remarkable compared with TI-based electric plasmon resonances(EPRs).The MoS_(2) photoluminescence can be flexibly tuned by controlling the incident light polarization.These results enrich TI optical physics and applications in highly efficient optical functionalities as well as artificial magnetic materials at high frequencies.

著录项

  • 来源
    《光:科学与应用(英文版)》 |2020年第1期|155-164|共10页
  • 作者单位

    MOE Key Laboratory of Material Physics and Chemistry under Extraordinary Conditions;

    and Shaanxi Key Laboratory of Optical Information Technology;

    School of Physical Science and Technology;

    Northwestern Polytechnical University;

    710129 Xi’an;

    China;

    Institute for Superconducting&Electronic Materials and ARC Centre of Excellence in Future Low-Energy Electronics;

    University of Wollongong;

    North Wollongong;

    NSW 2500;

    Australia;

    Center for Artificial-Intelligence Nanophotonics;

    School of Optical-Electrical and Computer Engineering;

    University of Shanghai for Science and Technology;

    200093 Shanghai;

    China;

    Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications;

    Institute of Photonics Technology;

    Jinan University;

    510632 Guangzhou;

    China;

    State Key Laboratory of Solidification Processing;

    School of Materials Science and Engineering;

    Northwestern Polytechnical University;

    710072 Xi’an;

    China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 原子核物理学、高能物理学;
  • 关键词

    topological; resonance; visible;

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