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      Chiral symmetry breaking and topological charge of graphene nanoribbons

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          Abstract

          We explore the edge properties of rectangular graphene nanoribbons featuring two zigzag edges and two armchair edges. Although the self-consistent Hartree-Fock fields break chiral symmetry, our work demonstrates that graphene nanoribbons maintain their status as short-range entangled symmetry-protected topological insulators. The relevant symmetry involves combined mirror and time-reversal operations. In undoped ribbons displaying edge ferromagnetism, the band gap edge states with a topological charge form on the zigzag edges. An analysis of the anomalous continuity equation elucidates that this topological charge is induced by the gap term. In low-doped zigzag ribbons, where the ground state exhibits edge spin density waves, this topological charge appears as a nearly zero-energy edge mode.

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          Journal
          09 December 2023
          Article
          2312.05487
          93bb3086-df68-4744-9261-5e4a49348e49

          http://creativecommons.org/licenses/by/4.0/

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          Custom metadata
          cond-mat.mes-hall cond-mat.mtrl-sci cond-mat.str-el quant-ph

          Condensed matter,Quantum physics & Field theory,Nanophysics
          Condensed matter, Quantum physics & Field theory, Nanophysics

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