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Fermi arcs around magnetic domain walls in a compensated ferrimagnetic Weyl semimetal Ti₂MnAl

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arxiv 2503.07108 v1 pith:MRXIZB5Z submitted 2025-03-10 cond-mat.mes-hall cond-mat.mtrl-sci

Fermi arcs around magnetic domain walls in a compensated ferrimagnetic Weyl semimetal Ti₂MnAl

classification cond-mat.mes-hall cond-mat.mtrl-sci
keywords arcsfermiweyldomainmnalmagneticwall-inducedcompensated
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Fermi arcs are one of the characteristic features of Weyl semimetals, appearing as surface states that connect Weyl points with opposite chiralities. It has also been suggested that Fermi arcs can emerge in the bulk due to the interplay between magnetic textures and Weyl physics. We focus on Ti$_2$MnAl which is an ideal magnetic Weyl semimetal with a compensated ferrimagnetic order. We systematically analyze domain wall-induced Fermi arcs in Ti$_2$MnAl using an effective tight-binding model. By varying the strength of spin-orbit coupling, we confirmed that these domain wall-induced Fermi arcs emerge as a result of shifts in the positions of the Weyl points. Furthermore, we found that these domain wall-induced Fermi arcs in Ti$_2$MnAl originate from the Chern number and represent a topologically robust state that is independent of the domain wall width.

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