首页> 中文期刊> 《光:科学与应用(英文版)》 >Non-Hermitian chiral degeneracy of gated graphene metasurfaces

Non-Hermitian chiral degeneracy of gated graphene metasurfaces

         

摘要

Non-Hermitian degeneracies,also known as exceptional points(EPs),have been the focus of much attention due to their singular eigenvalue surface structure.Nevertheless,as pertaining to a non-Hermitian metasurface platform,the reduction of an eigenspace dimensionality at the EP has been investigated mostly in a passive repetitive manner.Here,we propose an electrical and spectral way of resolving chiral EPs and clarifying the consequences of chiral mode collapsing of a non-Hermitian gated graphene metasurface.More specifically,the measured non-Hermitian Jones matrix in parameter space enables the quantification of nonorthogonality of polarisation eigenstates and half-integer topological charges associated with a chiral EP.Interestingly,the output polarisation state can be made orthogonal to the coalesced polarisation eigenstate of the metasurface,revealing the missing dimension at the chiral EP.In addition,the maximal nonorthogonality at the chiral EP leads to a blocking of one of the cross-polarised transmission pathways and,consequently,the observation of enhanced asymmetric polarisation conversion.We anticipate that electrically controllable non-Hermitian metasurface platforms can serve as an interesting framework for the investigation of rich non-Hermitian polarisation dynamics around chiral EPs.

著录项

  • 来源
    《光:科学与应用(英文版)》 |2023年第5期|766-775|共10页
  • 作者单位

    Department of Mechanical Engineering;

    Korea Advanced Institute of Science and Technology(KAIST);

    Daehak-ro 291;

    Daejeon 34141;

    Republic of Korea;

    Department of Electrical and Computer Engineering;

    University of Minnesota;

    200 Union street SE;

    Minneapolis;

    MN 55455;

    USA;

    Harvard Institute of Medicine;

    Harvard Medical School;

    Harvard University;

    Brigham and Women's Hospital;

    25 Shattuck Street;

    Boston;

    MA 02215;

    USA;

    Center for Integrated Nanostructure Physics;

    Institute for Basic Science(IBS);

    Sungkyunkwan University;

    Seobu-ro 2066;

    Suwon 16419;

    Republic of Korea;

    Samsung Advanced Institute of Technology;

    Samsung Electronics;

    Samsung-ro;

    Suwon 16678;

    Republic of Korea;

    Department of Physics;

    The University of Hong Kong;

    Pokfulam Road;

    Hong Kong Special Administrative Region;

    China;

    Department of Electrical and Systems Engineering;

    Washington University;

    1 Brookings Drive;

    Saint Louis;

    MO 63130;

    USA;

    Department of Physics;

    Korea Advanced Institute of Science and Technology(KAIST);

    Daehak-ro 291;

    Daejeon 34141;

    Republic of Korea;

    Department of Physics;

    University of Ulsan;

    Daehakro;

    Ulsan 44610;

    Republic of Korea;

    Korea Research Institute of Standards and Science(KRISS);

    Gajeong-ro 267;

    Daejeon 34113;

    Republic of Korea;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 有机化学;
  • 关键词

    structure; chiral; integer;

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