English

Non-Hermitian Dirac cones with valley-dependent lifetimes

Mesoscale and Nanoscale Physics 2025-02-18 v2 Applied Physics

Abstract

Relativistic quasiparticles emerging from band degeneracies in crystals play crucial roles in the transport and topological properties of materials and metamaterials. Quasiparticles are commonly described by Hermitian Hamiltonians, with non-Hermiticity usually considered detrimental. In this work, we show that such an assumption of Hermiticity can be lifted to bring quasiparticles into non-Hermitian regime. We propose a concrete lattice model containing two Dirac cones with valley-dependent lifetimes. The lifetime contrast enables an ultra-strong valley selection rule: only one valley can survive in the long-time limit regardless of the excitation, lattice shape and other details. This property leads to an effective parity anomaly with a single Dirac cone and offers a simple way to generate vortex states. Additionally, extending non-Hermitian features to boundaries generates valley kink states with valley-locked lifetimes, making them effectively unidirectional and more resistant against inter-valley scattering. All these phenomena are experimentally demonstrated in a non-Hermitian electric circuit lattice.

Keywords

Cite

@article{arxiv.2410.06058,
  title  = {Non-Hermitian Dirac cones with valley-dependent lifetimes},
  author = {Xinrong Xie and Fei Ma and W. B. Rui and Zhaozhen Dong and Yulin Du and Wentao Xie and Y. X. Zhao and Hongsheng Chen and Fei Gao and Haoran Xue},
  journal= {arXiv preprint arXiv:2410.06058},
  year   = {2025}
}
R2 v1 2026-06-28T19:13:02.413Z