Giant Spin-to-Charge Conversion by Tailoring Magnetically Proximitized Topological Dirac Semimetal

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Ishida, Masayuki, Fukuoka, Soichiro, Chiba, Takahiro, Kota, Yohei, Tanaka, Masaaki, Anh, Le Duc
Format: Preprint
Published: 2025
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866911073158823936
author Ishida, Masayuki
Fukuoka, Soichiro
Chiba, Takahiro
Kota, Yohei
Tanaka, Masaaki
Anh, Le Duc
author_facet Ishida, Masayuki
Fukuoka, Soichiro
Chiba, Takahiro
Kota, Yohei
Tanaka, Masaaki
Anh, Le Duc
contents While ferromagnet and topological material bilayers are widely studied to obtain efficient spin charge conversion via topological surface states (TSS), the influence of the magnetic proximity effect (MPE) on the TSS evolution and conversion efficiency remains poorly understood. In this study, we experimentally probe and reveal the behavior of spin momentum locked TSS through spin pumping measurements in heterostructures composed of ferromagnetic Fe and the topological Dirac semimetal alpha Sn. As the alpha Sn thickness (tSn) increases from 9 to 35 nm, the Gilbert damping constant of the Fe layer exhibits a pronounced peak at tSn = 25 nm, followed by a decrease at greater thicknesses. Our rigorous theoretical analysis, combining analytical modeling and first principles calculations, attributes this behavior to the TSS disappearance at the Fe and alpha Sn interface and exchange gap opening on the opposite surface, both induced by the long range MPE and its influence on the spin charge conversion efficiency. At tSn = 25 nm, we demonstrate highly efficient spin charge conversion with an inverse Edelstein length of 3.14 nm, the highest value reported at room temperature for ferromagnet and topological material bilayers. These findings underscore the critical role of tuning TSS properties under MPE for advancing topological materials in spintronic applications.
format Preprint
id arxiv_https___arxiv_org_abs_2507_17639
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Giant Spin-to-Charge Conversion by Tailoring Magnetically Proximitized Topological Dirac Semimetal
Ishida, Masayuki
Fukuoka, Soichiro
Chiba, Takahiro
Kota, Yohei
Tanaka, Masaaki
Anh, Le Duc
Materials Science
Mesoscale and Nanoscale Physics
Applied Physics
While ferromagnet and topological material bilayers are widely studied to obtain efficient spin charge conversion via topological surface states (TSS), the influence of the magnetic proximity effect (MPE) on the TSS evolution and conversion efficiency remains poorly understood. In this study, we experimentally probe and reveal the behavior of spin momentum locked TSS through spin pumping measurements in heterostructures composed of ferromagnetic Fe and the topological Dirac semimetal alpha Sn. As the alpha Sn thickness (tSn) increases from 9 to 35 nm, the Gilbert damping constant of the Fe layer exhibits a pronounced peak at tSn = 25 nm, followed by a decrease at greater thicknesses. Our rigorous theoretical analysis, combining analytical modeling and first principles calculations, attributes this behavior to the TSS disappearance at the Fe and alpha Sn interface and exchange gap opening on the opposite surface, both induced by the long range MPE and its influence on the spin charge conversion efficiency. At tSn = 25 nm, we demonstrate highly efficient spin charge conversion with an inverse Edelstein length of 3.14 nm, the highest value reported at room temperature for ferromagnet and topological material bilayers. These findings underscore the critical role of tuning TSS properties under MPE for advancing topological materials in spintronic applications.
title Giant Spin-to-Charge Conversion by Tailoring Magnetically Proximitized Topological Dirac Semimetal
topic Materials Science
Mesoscale and Nanoscale Physics
Applied Physics
url https://arxiv.org/abs/2507.17639