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Yugo Ueda

Publications and source records attributed to Yugo Ueda.

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Origin of the giant spin Hall effect in BiSb topological insulator

The giant spin Hall effect (SHE) at room temperature is one of the most attractive feature of topological insulators (TIs) for applications to nano-scale spin devices. Its origin, however, remains a controversial problem. Here, we identify the origin of the giant SHE in BiSb thin films by measuring the spin Hall angle ${\theta}_{SH}$ under controllable contribution of surface and bulk conduction. We found that ${\theta}_{SH}$ of a Bi$_{0.6}$Sb$_{0.4}$ TI thin film takes colossal values (450 - 530 at 8 K, and 38 at 300 K), and is almost governed by contribution from the topological surface states. Meanwhile, ${\theta}_{SH}$ in a Bi$_{0.2}$Sb$_{0.8}$ semi-metallic thin film without topological surface states drastically decreases. Our results provide a quantitative tool for analysing the origin of the giant SHE in TI thin films, as well as a strategy for designing spin current source utilizing the surface states of TI in high-performance nano-scale spin devices.

cond-mat.mes-hall

A conductive topological insulator with colossal spin Hall effect for ultra-low power spin-orbit-torque switching

Spin-orbit-torque (SOT) switching using the spin Hall effect (SHE) in heavy metals and topological insulators (TIs) has great potential for ultra-low power magnetoresistive random-access memory (MRAM). To be competitive with conventional spin-transfer-torque (STT) switching, a pure spin current source with large spin Hall angle (${\theta}_{SH}$ > 1) and high electrical conductivity (${\sigma} > 10^5 {\Omega}^{-1}m^{-1}$) is required. Here, we demonstrate such a pure spin current source: BiSb thin films with ${\sigma}{\sim}2.5*10^5 {\Omega}^{-1}m^{-1}$, ${\theta}_{SH}{\sim}52$, and spin Hall conductivity ${\sigma}_{SH}{\sim}1.3*10^7 {\hbar}/2e{\Omega}^{-1}m^{-1}$ at room temperature. We show that BiSb thin films can generate a colossal spin-orbit field of 2770 Oe/(MA/cm$^2$) and a critical switching current density as low as 1.5 MA/cm$^2$ in Bi$_{0.9}$Sb$_{0.1}$ / MnGa bi-layers. BiSb is the best candidate for the first industrial application of topological insulators.

cond-mat.mtrl-sci