Magnetic control of Weyl nodes and wave packets in three-dimensional warped semimetals

Author:

Focassio Bruno12ORCID,Schleder Gabriel R.12ORCID,Fazzio Adalberto32,Capaz Rodrigo B.124ORCID,Lopes Pedro V.4ORCID,Ferreira Jaime5ORCID,Enderlein Carsten4ORCID,Neto Marcello B. Silva412ORCID

Affiliation:

1. Laboratório Nacional de Nanotecnologia

2. CNPEM

3. Ilum School of Science

4. Universidade Federal do Rio de Janeiro

5. Centro Brasileiro de Pesquisas Físicas

Abstract

We investigate the topological phase transitions driven by band warping, λ, and a transverse magnetic field, B, for three-dimensional Weyl semimetals. First, we use the Chern number as a mathematical tool to derive the topological λ×B phase diagram. Next, we associate each of the topological sectors to a given angular momentum state of a rotating wave packet. Then we show how the position of the Weyl nodes can be manipulated by a transverse external magnetic field that ultimately quenches the wave packet rotation, first partially and then completely, thus resulting in a sequence of field-induced topological phase transitions. Finally, we calculate the current-induced magnetization and the anomalous Hall conductivity of a prototypical warped Weyl material. Both observables reflect the topological transitions associated with the wave packet rotation and can help to identify the elusive 3D quantum anomalous Hall effect in three-dimensional, warped Weyl materials. Published by the American Physical Society 2024

Funder

Conselho Nacional de Desenvolvimento Científico e Tecnológico

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

American Physical Society (APS)

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