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  • Topological circuit of a versatile non-Hermitian quantum system - Springer
    tary operator Γˆ Chiral symmetry in a non-Hermitian system implies that the eigenvalues appear in pairs, which is impor-tant for protected zero-energy edge modes [23] Thus, chi-ral symmetry in non-Hermitian systems can be expressed as ΓˆHˆ†(k)Γˆ−1 =−Hˆ(k)[18] Our proposed non-Hermitian circuit model (sect 2) has chiral symmetry
  • Topological defect engineering and PT-symmetry in non-Hermitian . . .
    We employ electric circuit networks to study topological states of matter in non-Hermitian systems enriched by parity-time symmetry $\\mathcal{PT}$ and chiral symmetry anti-$\\mathcal{PT}$ ($\\mathcal{APT}$) The topological structure manifests itself in the complex admittance bands which yields excellent measurability and signal to noise ratio We analyze the impact of $\\mathcal{PT
  • 非厄米格点模型的经典电路模拟 - 物理学报
    (a) Circuit diagram of a unit cell of the non-Hermitian second-order topological electric circuit; (b) one-dimensional gapped edge states, where the color map and the blue circles represent the data from the experiment and the theoretical calculation, respectively; (c) experimental voltage distributions of the zeroth dimensional corner states
  • Topological Defect Engineering and P T Symmetry in Non-Hermitian . . .
    PDF | We employ electric circuit networks to study topological states of matter in non-Hermitian systems enriched by parity-time symmetry PT and chiral | Find, read and cite all the research
  • Symmetry and Topology in Non-Hermitian Physics | Phys. Rev. X
    Non-Hermiticity enriches topological phases beyond the existing Hermitian framework Whereas their unusual features with no Hermitian counterparts were extensively explored, a full understanding about the role of symmetry in non-Hermitian physics has still been elusive, and there remains an urgent need to establish their topological classification in view of rapid theoretical and experimental
  • Non-Hermitian Dirac cones with valley-dependent lifetimes
    Observation of non-Hermitian topological valley kink states demonstrated in a non-Hermitian electric circuit lattice of the circuit lattice along high-symmetry lines when
  • Generalized bulk–boundary correspondence in non-Hermitian . . . - Nature
    Boundary-localized bulk eigenstates given by the non-Hermitian skin effect are observed in a non-reciprocal topological circuit A fundamental revision of the bulk–boundary correspondence in an
  • Non-Hermitian non-Abelian topological insulators with symmetry
    the system non-Hermitian later B PT Symmetry We so far considered PT-symmetric Hermitian systems In general, the eigenvalues and the eigenvectors are complex in non-Hermitian systems However, they can be real in the presence of PT symmetry even in non-Hermitian systems [15,20,32,35] WereviewPT symmetrybeforeweinvestigate non-Hermitian systems
  • Electrical circuit realization of topological switching for the non . . .
    Non-Hermitian systems reveal rich physics beyond the Hermitian regime, and have aroused great interest One remarkable physical phenomenon is the non-Hermitian skin effect Recently, topological switching for the non-Hermitian skin effect has been theoretically proposed in cold-atom systems However, experimental realization of such a phenomenon remains a great challenge Here, we
  • Circuit realization of topological physics - ScienceDirect
    The circuit realization of (higher-order) TSMs is summarized in Section 4, covering the Dirac, Weyl, and nodal-line ones In Section 5, unconventional topological states in circuit are presented, including non-Hermitian, nonlinear, non-Abelian, non-periodic, non-Euclidean, higher-dimensional, and other exotic topological states





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