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  • Letter

Magnetic breakdown and chiral magnetic effect at Weyl-semimetal tunnel junctions

Adam Yanis Chaou, Vatsal Dwivedi, and Maxim Breitkreiz*

  • Dahlem Center for Complex Quantum Systems and Fachbereich Physik, Freie Universität Berlin, 14195 Berlin, Germany

  • *breitkr@physik.fu-berlin.de

Phys. Rev. B 107, L241109 – Published 29 June, 2023

DOI: https://doi.org/10.1103/PhysRevB.107.L241109

Abstract

We investigate magnetotransport across an interface between two Weyl semimetals whose Weyl nodes project onto different interface momenta. Such an interface generically hosts Fermi arcs that connect Weyl nodes of identical chirality in different Weyl semimetals (homochiral connectivity)—in contrast to surface Fermi arcs that connect opposite-chirality Weyl nodes within the same Weyl semimetal (heterochiral connectivity). We show that electron transport along homochiral-connectivity Fermi arcs, in the presence of a longitudinal magnetic field, results in a universal longitudinal magnetoconductance of e2/h per magnetic flux quantum. Furthermore, a weak tunnel coupling can result in a close encounter of two homochiral-connectivity Fermi arcs, enabling magnetic breakdown. Above the breakdown field the interface Fermi arc connectivity is effectively heterochiral, leading to a saturation of the conductance.

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