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arxiv: 1712.02444 · v1 · pith:DCNGLV4Rnew · submitted 2017-12-06 · ❄️ cond-mat.mes-hall · cond-mat.str-el· physics.optics

Effects of non-Hermitian perturbations on Weyl Hamiltonians with arbitrary topological charges

classification ❄️ cond-mat.mes-hall cond-mat.str-elphysics.optics
keywords topologicalchargecontoursexceptionalnon-hermitiansystemsweylarbitrary
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We provide a systematic study of non-Hermitian topologically charged systems. Starting from a Hermitian Hamiltonian supporting Weyl points with arbitrary topological charge, adding a non-Hermitian perturbation transforms the Weyl points to one-dimensional exceptional contours. We analytical prove that the topological charge is preserved on the exceptional contours. In contrast to Hermitian systems, the addition of gain and loss allows for a new class of topological phase transition: when two oppositely charged exceptional contours touch, the topological charge can dissipate without opening a gap. These effects can be demonstrated in realistic photonics and acoustics systems.

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