Non-trivial topology in rare-earth monopnictides from dimensionality reduction

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Ho, Dai Q., Hu, Ruiqi, To, D. Quang, Bryant, Garnett W., Janotti, Anderson
Format: Preprint
Veröffentlicht: 2023
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866916628198850560
author Ho, Dai Q.
Hu, Ruiqi
To, D. Quang
Bryant, Garnett W.
Janotti, Anderson
author_facet Ho, Dai Q.
Hu, Ruiqi
To, D. Quang
Bryant, Garnett W.
Janotti, Anderson
contents Thin films of rare-earth monopnictide semimetals are expected to turn into semiconductors due to quantum confinement effect, which lifts the overlap between electron pockets at Brillouin zone edges and hole pockets at the zone center. Instead, taking non-magnetic LaSb as an example, we find the emergence of a quantum spin Hall insulator phase in LaSb(001) films as the thickness is reduced to 7, 5, or 3 monolayers. This is attributed to a strong quantum confinement effect on the in-plane electron pockets, and the lack of quantum confinement on the out-of-plane pocket in reciprocal space projected onto zone center, leading to a band inversion. Spin-orbit coupling opens a sizeable non-trivial gap in the band structure of the thin films. Such effect is shown to be general in rare-earth monopnictides and may lead to interesting phenomena when coupled with the 4f magnetic moments present in other members of this family of materials.
format Preprint
id arxiv_https___arxiv_org_abs_2302_02049
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Non-trivial topology in rare-earth monopnictides from dimensionality reduction
Ho, Dai Q.
Hu, Ruiqi
To, D. Quang
Bryant, Garnett W.
Janotti, Anderson
Materials Science
Thin films of rare-earth monopnictide semimetals are expected to turn into semiconductors due to quantum confinement effect, which lifts the overlap between electron pockets at Brillouin zone edges and hole pockets at the zone center. Instead, taking non-magnetic LaSb as an example, we find the emergence of a quantum spin Hall insulator phase in LaSb(001) films as the thickness is reduced to 7, 5, or 3 monolayers. This is attributed to a strong quantum confinement effect on the in-plane electron pockets, and the lack of quantum confinement on the out-of-plane pocket in reciprocal space projected onto zone center, leading to a band inversion. Spin-orbit coupling opens a sizeable non-trivial gap in the band structure of the thin films. Such effect is shown to be general in rare-earth monopnictides and may lead to interesting phenomena when coupled with the 4f magnetic moments present in other members of this family of materials.
title Non-trivial topology in rare-earth monopnictides from dimensionality reduction
topic Materials Science
url https://arxiv.org/abs/2302.02049