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May 21, 2026Proceedings of the Royal Society A Mathematical Physical and Engineering Sciences0 citationsOpen Access

Exploring spectral singularities in Dirac semimetals: the role of non-Hermitian physics and dichroism

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MSMustafa SarısamanMTM. TaşEKEnes Talha Kırca

Key Points

  • The study aims to investigate the unique properties of Dirac semimetals related to non-Hermitian physics and spectral singularities.
  • Employs scattering techniques to analyze spectral singularities in Dirac semimetals.
  • Examines the interaction of axion textures with electromagnetic waves in TE mode configurations.
  • Explores the impact of magneto-electric effects on dichroic properties of potential DSM candidates.
  • Identifies 12 unique topological laser types generated by dichroic Dirac semimetals.
  • Finds surface currents induced by topological terms on DSM surfaces.
  • Confirms stability of topological properties in DSMs with a single Dirac cone under external influences.

Abstract

Abstract In this study, motivated by recent advancements in non-Hermitian physics, we explore new characteristics of Dirac semimetals (DSMs) using the spectral singularities by means of scattering techniques, with the goal of uncovering additional unique properties. To achieve this, we investigate how the axion texture of a DSM affects its topological properties by analysing its interaction with electromagnetic waves. We examine the transverse electric (TE) mode configuration, where the magneto-electric effect induces a dichroic property in these materials. This behaviour is particularly interesting and commonly seen in potential DSM candidates. Consequently, we report for the first time that a dichroic DSM generates 12 unique topological laser types. We discover that surface currents are generated by topological terms on the surface of the DSM slab. Furthermore, we examine how the θ term associated with axions in topological materials contributes to these topological properties. Our study reveals the distinct topological role of the θ term more clearly than ever before. Our results confirm that the topological properties of DSMs with a single Dirac cone remain stable under external influences and that a topologically robust DSM laser can be developed accordingly.

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Cite This Study

Sarısaman et al. (2026) studied this question.

synapsesocial.com/papers/6a0ea127be05d6e3efb5f903https://doi.org/10.1098/rspa.2025.0792
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