Signatures of the quantum skyrmion Hall effect in the Bernevig-Hughes-Zhang model

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Hauptverfasser: Ay, Reyhan, Pal, Adipta, Cook, Ashley M.
Format: Preprint
Veröffentlicht: 2024
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author Ay, Reyhan
Pal, Adipta
Cook, Ashley M.
author_facet Ay, Reyhan
Pal, Adipta
Cook, Ashley M.
contents Given recent discovery of the quantum skyrmion Hall effect, we re-examine the related canonical Bernevig-Hughes-Zhang (BHZ) model for the quantum spin Hall insulator. Within the framework of the quantum skyrmion Hall effect, isospin degree(s) of freedom of the BHZ model encode additional spatial dimensions. Consistent with this framework, we observe phenomena similar to those of the four dimensional Chern insulator, revealed by weakly breaking time-reversal symmetry. Bulk-boundary correspondence of these states includes real-space boundary orbital angular momentum textures and gapless boundary modes that are robust against magnetic disorder, consistent with compactified three dimensional boundary Weyl nodes (WN$_F$s) of the quantum skyrmion Hall effect. These theoretical findings are furthermore consistent with past experimental work reporting unexpected edge conduction in HgTe quantum wells under applied Zeeman and orbital magnetic fields. This past work is therefore potentially the first known experimental observation of signatures of the quantum skyrmion Hall effect beyond the quantum Hall effect.
format Preprint
id arxiv_https___arxiv_org_abs_2412_19568
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Signatures of the quantum skyrmion Hall effect in the Bernevig-Hughes-Zhang model
Ay, Reyhan
Pal, Adipta
Cook, Ashley M.
Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
High Energy Physics - Theory
Quantum Physics
Given recent discovery of the quantum skyrmion Hall effect, we re-examine the related canonical Bernevig-Hughes-Zhang (BHZ) model for the quantum spin Hall insulator. Within the framework of the quantum skyrmion Hall effect, isospin degree(s) of freedom of the BHZ model encode additional spatial dimensions. Consistent with this framework, we observe phenomena similar to those of the four dimensional Chern insulator, revealed by weakly breaking time-reversal symmetry. Bulk-boundary correspondence of these states includes real-space boundary orbital angular momentum textures and gapless boundary modes that are robust against magnetic disorder, consistent with compactified three dimensional boundary Weyl nodes (WN$_F$s) of the quantum skyrmion Hall effect. These theoretical findings are furthermore consistent with past experimental work reporting unexpected edge conduction in HgTe quantum wells under applied Zeeman and orbital magnetic fields. This past work is therefore potentially the first known experimental observation of signatures of the quantum skyrmion Hall effect beyond the quantum Hall effect.
title Signatures of the quantum skyrmion Hall effect in the Bernevig-Hughes-Zhang model
topic Mesoscale and Nanoscale Physics
Strongly Correlated Electrons
High Energy Physics - Theory
Quantum Physics
url https://arxiv.org/abs/2412.19568