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- W1970601802 abstract "Devices based on pure spin currents have been attracting increasing attention as key ingredients for low-dissipation electronics. To integrate such spintronics devices into charge-based technologies, electric detection of spin currents is essential. The inverse spin Hall effect converts a spin current into an electric voltage through spin-orbit coupling. Noble metals such as Pt and Pd, and also Cu-based alloys, have been regarded as potential materials for a spin-current injector, owing to the large direct spin Hall effect. Their spin Hall resistivity ρSH, representing the performance as a detector, is not large enough, however, due mainly because of their low charge resistivity. Here we report that a binary 5d transition metal oxide, iridium oxide, overcomes the limitations encountered in noble metals and Cu-based alloys and shows a very large ρSH~38 μΩ cm at room temperature. The success of spintronics as a new technology hinges on the materials that are suitable for turning a spin current into an electric current. Here, the authors introduce a new material, iridium oxide, for this purpose, which outperforms traditional materials like platinum." @default.
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- W1970601802 date "2013-12-11" @default.
- W1970601802 modified "2023-10-16" @default.
- W1970601802 title "5d iridium oxide as a material for spin-current detection" @default.
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- W1970601802 doi "https://doi.org/10.1038/ncomms3893" @default.
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