We have demonstrated the electrical generation and detection of spin polarization by the spin Hall effect (SHE) in platinum. The experiment was performed in a non-local geometry without the use of ferromagnetic materials or magnetic field. We designed a circuit that uses the SHE to convert a charge current to a spin current, and the inverse SHE to convert the spin current back into a charge signal. The experiments were carried out for temperatures from 10 K up to 290 K. We extracted the spin Hall conductivity and spin diffusion length from the data with the aid of a spin diffusion model, and found the values of 1.1 ×106Ω−1m−1 and 80~nm, respectively, at 290 K. The spin Hall conductivity is two orders of magnitudes larger than the previous record of 3.3×104Ω−1m−1. This observation may have many potential applications in spintronics devices.
@article{arxiv.1004.1273,
title = {Giant spin Hall conductivity in platinum at room temperature},
author = {Chee Weng Koong and Berthold-Georg Englert and Christian Miniatura and N. Chandrasekhar},
journal= {arXiv preprint arXiv:1004.1273},
year = {2010}
}