Enhancement of Spin-Charge Conversion Efficiency for Co$_{3}$Sn$_{2}$S$_{2}$ across Transition from Paramagnetic to Ferromagnetic Phase
Takeshi Seki, Yong-Chang Lau, Junya Ikeda, Kohei Fujiwara, Akihiro, Ozawa, Satoshi Iihama, Kentaro Nomura, and Atsushi Tsukazaki

TL;DR
This study demonstrates that the spin-charge conversion efficiency in Co$_{3}$Sn$_{2}$S$_{2}$ significantly increases below its ferromagnetic transition temperature, highlighting the impact of magnetic phase transition on spintronic performance.
Contribution
It provides experimental and theoretical evidence that ferromagnetic phase transition enhances spin Hall conductivity and spin-charge conversion efficiency in Co$_{3}$Sn$_{2}$S$_{2}$.
Findings
Spin-charge conversion efficiency increases below T_C.
Spin Hall conductivity rises with magnetic moment emergence.
GMR and AMR effects influence the voltage signals.
Abstract
CoSnS (CSS) is one of the shandite compounds and becomes a magnetic Weyl semimetal candidate below the ferromagnetic phase transition temperature (). In this paper, we investigate the temperature () dependence of conversion between charge current and spin current for the CSS thin film by measuring the spin-torque ferromagnetic resonance (ST-FMR) for the trilayer consisting of CSS / Cu / CoFeB. Above ~ 170 K, the CSS / Cu / CoFeB trilayer exhibits the clear ST-FMR signal coming from the spin Hall effect in the paramagnetic CSS and the anisotropic magnetoresistance (AMR) of CoFeB. Below , on the other hand, it is found that the ST-FMR signal involves the dc voltages () not only through the AMR but also through the giant magnetoresistance (GMR). Thus, the resistance…
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Taxonomy
TopicsHeusler alloys: electronic and magnetic properties · Magnetic and transport properties of perovskites and related materials · Electronic and Structural Properties of Oxides
