Dirac branch-cut modes

Fuente: arXiv
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Main Authors: Zhu, Bofeng, Ma, Chengzhi, Wang, Qiang, Liu, Gui-Geng, Zhang, Xiuhai, Wang, Qi Jie, Zhang, Baile, Chong, Y. D.
Format: Preprint
Published: 2026
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author Zhu, Bofeng
Ma, Chengzhi
Wang, Qiang
Liu, Gui-Geng
Zhang, Xiuhai
Wang, Qi Jie
Zhang, Baile
Chong, Y. D.
author_facet Zhu, Bofeng
Ma, Chengzhi
Wang, Qiang
Liu, Gui-Geng
Zhang, Xiuhai
Wang, Qi Jie
Zhang, Baile
Chong, Y. D.
contents Bound states arising in Dirac fields are usually attributed to two kinds of features: domain walls where a real Dirac mass field changes sign, which host Jackiw-Rebbi states, and phase singularities in a complex Dirac mass field, which host Jackiw-Rossi zero modes. We show that phase discontinuities, such as branch-cuts of complex branch functions, supply a third distinct binding mechanism. We derive the existence of guided modes that propagate along the cut, called Dirac branch-cut (DBC) modes, which obey an effective one-dimensional relativistic Dirac equation with a reduced mass determined by the phase difference across the cut. When the mass field has fixed magnitude, the DBC modes' transverse confinement lengths are energy-independent, unlike Jackiw-Rebbi and Jackiw-Rossi states or conventional boundary modes. Using acoustic metamaterials, we realize DBC modes experimentally, and verify their relativistic dispersion, robust transverse confinement length, and ability to propagate along freeform paths. These results show that phase discontinuities in a complex Dirac mass field constitute a versatile design principle for guided modes, with interesting application possibilities for photonic and acoustic metamaterials.
format Preprint
id arxiv_https___arxiv_org_abs_2603_28127
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Dirac branch-cut modes
Zhu, Bofeng
Ma, Chengzhi
Wang, Qiang
Liu, Gui-Geng
Zhang, Xiuhai
Wang, Qi Jie
Zhang, Baile
Chong, Y. D.
Optics
Materials Science
Bound states arising in Dirac fields are usually attributed to two kinds of features: domain walls where a real Dirac mass field changes sign, which host Jackiw-Rebbi states, and phase singularities in a complex Dirac mass field, which host Jackiw-Rossi zero modes. We show that phase discontinuities, such as branch-cuts of complex branch functions, supply a third distinct binding mechanism. We derive the existence of guided modes that propagate along the cut, called Dirac branch-cut (DBC) modes, which obey an effective one-dimensional relativistic Dirac equation with a reduced mass determined by the phase difference across the cut. When the mass field has fixed magnitude, the DBC modes' transverse confinement lengths are energy-independent, unlike Jackiw-Rebbi and Jackiw-Rossi states or conventional boundary modes. Using acoustic metamaterials, we realize DBC modes experimentally, and verify their relativistic dispersion, robust transverse confinement length, and ability to propagate along freeform paths. These results show that phase discontinuities in a complex Dirac mass field constitute a versatile design principle for guided modes, with interesting application possibilities for photonic and acoustic metamaterials.
title Dirac branch-cut modes
topic Optics
Materials Science
url https://arxiv.org/abs/2603.28127