Spin pumping through nanocrystalline topological insulators

Author:

Burn David MORCID,Lin Jheng-CyuanORCID,Fujita RyujiORCID,Achinuq BaratORCID,Bibby JoshuaORCID,Singh AngadjitORCID,Frisk AndreasORCID,van der Laan GerritORCID,Hesjedal ThorstenORCID

Abstract

Abstract The topological surface states (TSSs) in topological insulators (TIs) offer exciting prospects for dissipationless spin transport. Common spin-based devices, such as spin valves, rely on trilayer structures in which a non-magnetic layer is sandwiched between two ferromagnetic (FM) layers. The major disadvantage of using high-quality single-crystalline TI films in this context is that a single pair of spin-momentum locked channels spans across the entire film, meaning that only a very small spin current can be pumped from one FM to the other, along the side walls of the film. On the other hand, using nanocrystalline TI films, in which the grains are large enough to avoid hybridization of the TSSs, will effectively increase the number of spin channels available for spin pumping. Here, we used an element-selective, x-ray based ferromagnetic resonance technique to demonstrate spin pumping from a FM layer at resonance through the TI layer and into the FM spin sink.

Funder

Diamond Light Source

John Fell Fund, University of Oxford

Oxford-ShanghaiTech collaboration project

Leverhulme Trust

Engineering and Physical Sciences Research Council

Publisher

IOP Publishing

Subject

Electrical and Electronic Engineering,Mechanical Engineering,Mechanics of Materials,General Materials Science,General Chemistry,Bioengineering

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