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Terahertz spectroscopy for all-optical spintronic characterization of the spin-Hall-effect metals Pt, W and Cu80Ir20

  • Abstract Identifying materials with an efficient spin-to-charge conversion is crucial for future spintronic applications. In this respect, the spin Hall effect is a central mechanism as it allows for the interconversion of spin and charge currents. Spintronic material research aims at maximizing its efficiency, quantified by the spin Hall angle and the spin-current relaxation length . We develop an all-optical contact-free method with large sample throughput that allows us to extract and . Employing terahertz spectroscopy and an analytical model, magnetic metallic heterostructures involving Pt, W and Cu80Ir20 are characterized in terms of their optical and spintronic properties. The validity of our analytical model is confirmed by the good agreement with literature DC values. For the samples considered here, we find indications that the interface plays a minor role for the spin-current transmission. Our findings establish terahertz emission spectroscopy as a reliable tool complementing the spintronics workbench.

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Metadaten
Author: T S Seifert, N M Tran, O Gueckstock, S M Rouzegar, L Nadvornik, S Jaiswal, G Jakob, V V Temnov, M Münzenberg, M Wolf, M Kläui, T Kampfrath
URN:urn:nbn:de:gbv:9-opus-58981
DOI:https://doi.org/10.1088/1361-6463/aad536
ISSN:0022-3727
ISSN:1361-6463
Parent Title (English):Journal of Physics D: Applied Physics
Publisher:IOP Publishing
Place of publication:Bristol
Document Type:Article
Language:English
Date of first Publication:2018/08/06
Release Date:2022/11/11
Tag:terahertz emission spectroscopy; terahertz transmission spectroscopy; ultrafast spincaloritronics; ultrafast spintronics
GND Keyword:-
Volume:51
Issue:36
Article Number:364003
Page Number:8
Faculties:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik
Licence (German):License LogoCreative Commons - Namensnennung