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Orbital magnetoelectric effect in nanoribbons of transition metal dichalcogenides
Cysne, Tarik P. (Universidade Federal Fluminense. Instituto de Física)
Guimarães, Filipe S. M. (Forschungszentrum Jülich and JARA. Jülich Supercomputing Centre)
Canonico, Luis M. (Institut Català de Nanociència i Nanotecnologia)
Costa, Marcio (Universidade Federal Fluminense. Instituto de Física)
Rappoport, Tatiana Gabriela (Universidade Federal do Rio de Janeiro. Instituto de Física)
Muniz, R. B. (Universidade Federal Fluminense. Instituto de Física)

Fecha: 2023
Resumen: The orbital magnetoelectric effect (OME) generically refers to the appearance of an orbital magnetization induced by an applied electric field. Here, we show that nanoribbons of transition metal dichalcogenides (TMDs) with zigzag edges may exhibit a sizable OME activated by an electric field applied along the ribbons' axis. We examine nanoribbons extracted from a monolayer (1L) and a bilayer (2L) of MoS2 in the trigonal structural phase. Transverse profiles of the induced orbital angular momentum accumulations are calculated to first order in the longitudinally applied electric field. Our results show that close to the nanoribbon's edge-state crossings energy, the orbital angular momentum accumulations take place mainly around the ribbons' edges. They have two contributions: one arising from the orbital Hall effect (OHE) and the other consisting in the OME. The former is transversely antisymmetric with respect to the principal axis of the nanoribbon, whereas the latter is symmetric and hence responsible for the resultant orbital magnetization induced in the system. We found that the orbital accumulation originating from the OHE for the 1L nanoribbon is approximately half that of a 2L nanoribbon. Furthermore, while the OME can reach fairly high values in 1L-TMD nanoribbons, it vanishes in the 2L ones that preserve spatial inversion symmetry. The microscopic features that justify our findings are also discussed.
Ayudas: Agencia Estatal de Investigación SEV-2017-0706
Nota: Altres ajuts: CERCA Programme/Generalitat de Catalunya; Barcelona Supercomputing Center (FI-20202-0033)
Derechos: Aquest material està protegit per drets d'autor i/o drets afins. Podeu utilitzar aquest material en funció del que permet la legislació de drets d'autor i drets afins d'aplicació al vostre cas. Per a d'altres usos heu d'obtenir permís del(s) titular(s) de drets.
Lengua: Anglès
Documento: Article ; recerca ; Versió acceptada per publicar
Materia: Bi-layer ; Dichalcogenides ; Edge state ; First order ; Orbital angular momentum ; Orbital magnetization ; Orbitals ; Structural phasis ; Transverse profile ; Zigzag edges
Publicado en: Physical review B, Vol. 107, Issue 11 (March 2023) , art. 115402, ISSN 2469-9969

DOI: 10.1103/PhysRevB.107.115402


Postprint
18 p, 6.8 MB

El registro aparece en las colecciones:
Documentos de investigación > Documentos de los grupos de investigación de la UAB > Centros y grupos de investigación (producción científica) > Ciencias > Institut Català de Nanociència i Nanotecnologia (ICN2)
Artículos > Artículos de investigación
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 Registro creado el 2025-02-20, última modificación el 2025-05-16



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