Discovery of a 1D edge mode in a Magnetic Topological semimetal

dc.contributor.author Almoalem, Avior
dc.contributor.author Chan, Rebecca
dc.contributor.author Kuthanazhi, Brinda
dc.contributor.author Scmidt, Juan
dc.contributor.author Moreno, Jose A.
dc.contributor.author Suderow, Hermann
dc.contributor.author Canfield, Paul
dc.contributor.author hughes, Taylor L.
dc.contributor.author Madhavan, Vidya
dc.contributor.department Ames National Laboratory
dc.contributor.department Department of Physics and Astronomy
dc.date.accessioned 2025-06-20T17:26:45Z
dc.date.available 2025-06-20T17:26:45Z
dc.date.issued 2025-06-10
dc.description.abstract In rare-earth monopnictides like NdBi, the interplay between magnetism and topology results in an extremely unusual topological semimetal phase which simultaneously hosts Weyl points with Fermi arcs as well as massive and massless Dirac cones. A central question in this class of materials is whether ferromagnetic surfaces with gapped Dirac cones can also host robust well-defined chiral edge states. In this study, we use spin-polarized scanning tunneling microscopy (SP-STM) and spectroscopy to investigate the correlation between the magnetic and topological properties of NdBi. By combining SP-STM imaging with quasiparticle interference, we identify distinct signatures of both antiferromagnetic and ferromagnetic surface terminations and correlate them with their respective band structures. Crucially, we demonstrate that step edges on the ferromagnetic surface which serve as magnetic domain walls host well-defined one-dimensional (1D) edge modes that vanish above the Néel temperature. Our findings position NdBi as a promising platform for further explorations of 1D chiral edge modes and future realizations of Majorana states in proximitized rare-earth monopnictides.
dc.description.comments This is a preprint from Almoalem, Avior, Rebecca Chan, Brinda Kuthanazhi, Juan Scmidt, Jose A. Moreno, Hermann Suderow, Paul Canfield, and Vidya Madhavan. "Discovery of a 1D edge mode in a Magnetic Topological semimetal." arXiv preprint arXiv:2506.09041 (2025). doi: https://doi.org/10.48550/arXiv.2506.09041.
dc.identifier.uri https://dr.lib.iastate.edu/handle/20.500.12876/1wge6lEr
dc.language.iso en
dc.rights This preprint is licensed as CC BY.
dc.source.uri https://doi.org/10.48550/arXiv.2506.09041 *
dc.subject.disciplines DegreeDisciplines::Physical Sciences and Mathematics::Physics::Condensed Matter Physics
dc.subject.disciplines DegreeDisciplines::Physical Sciences and Mathematics::Mathematics::Geometry and Topology
dc.title Discovery of a 1D edge mode in a Magnetic Topological semimetal
dc.type preprint
dc.type.genre preprint
dspace.entity.type Publication
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relation.isOrgUnitOfPublication 25913818-6714-4be5-89a6-f70c8facdf7e
relation.isOrgUnitOfPublication 4a05cd4d-8749-4cff-96b1-32eca381d930
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