Spin-Polarized Tunable Photocurrents

Berdakin, Matias; Rodriguez-Mena, Esteban A.; Torres, Luis E. F. Foa

Abstract

Harnessing the unique features of topological materials for the development of a new generation of topological based devices is a challenge of paramount importance. Using Floquet scattering theory combined with atomistic models we study the interplay among laser illumination, spin, and topology in a two-dimensional material with spin-orbit coupling. Starting from a topological phase, we show how laser illumination can selectively disrupt the topological edge states depending on their spin. This is manifested by the generation of pure spin photocurrents and spin-polarized charge photocurrents under linearly and circularly polarized laser illumination, respectively. Our results open a path for the generation and control of spin-polarized photocurrents.

Más información

Título según WOS: Spin-Polarized Tunable Photocurrents
Título de la Revista: NANO LETTERS
Volumen: 21
Número: 7
Editorial: AMER CHEMICAL SOC
Fecha de publicación: 2021
Página de inicio: 3177
Página final: 3183
DOI:

10.1021/acs.nanolett.1c00420

Notas: ISI