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Topological Phase Transitions in the Disordered Haldane Model

Mildner, Jakub and Caio, Marcello D and Möller, Gunnar and Cooper, Nigel R and Bhaseen, M J (2023) Topological Phase Transitions in the Disordered Haldane Model. [Preprint] (doi:10.48550/arXiv.2312.16689) (The full text of this publication is not currently available from this repository. You may be able to access a copy if URLs are provided) (KAR id:114756)

The full text of this publication is not currently available from this repository. You may be able to access a copy if URLs are provided.
Official URL:
https://doi.org/10.48550/arXiv.2312.16689

Abstract

We investigate the phases and phase transitions of the disordered Haldane model in the presence of on-site disorder. We use the real-space Chern marker and transfer matrices to extract critical exponents over a broad range of parameters. The disorder-driven transitions are consistent with the plateau transitions in the Integer Quantum Hall Effect (IQHE), in conformity with recent simulations of disordered Dirac fermions. Our numerical findings are compatible with an additional line of mass-driven transitions with a continuously varying correlation length exponent. The values interpolate between free Dirac fermions and the IQHE with increasing disorder strength. We also show that the fluctuations of the Chern marker exhibit a power-law divergence in the vicinity of both sets of transitions, yielding another varying exponent. We discuss the interpretation of these results.

Item Type: Preprint
DOI/Identification number: 10.48550/arXiv.2312.16689
Refereed: No
Other identifier: https://arxiv.org/abs/2312.16689
Name of pre-print platform: arXiv
Uncontrolled keywords: Anderson transition, quantum Hall effect, Chern marker, transfer matrix approach, fluctuation exponent
Subjects: Q Science > QC Physics > QC173.45 Condensed Matter
REF2014 Units of Assessment > Main panel C > C19 Business and Management Studies > QC173.45 Condensed Matter
Institutional Unit: Schools > School of Engineering, Mathematics and Physics > Physics and Astronomy
Former Institutional Unit:
There are no former institutional units.
Funders: Royal Society (https://ror.org/03wnrjx87)
Depositing User: Gunnar Moeller
Date Deposited: 11 May 2026 18:11 UTC
Last Modified: 11 May 2026 18:11 UTC
Resource URI: https://kar.kent.ac.uk/id/eprint/114756 (The current URI for this page, for reference purposes)

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