arXiv · 1403.3528
Thermal Creation of Electron Spin Polarization in n-Type Silicon
Abstract
Conversion of heat into a spin-current in electron doped silicon can offer a promising path for spin-caloritronics. Here we create an electron spin polarization in the conduction band of n-type silicon by producing a temperature gradient across a ferromagnetic tunnel contact. The substrate heating experiments induce a large spin signal of 95 $\mu$V, corresponding to 0.54 meV spin-splitting in the conduction band of n-type silicon by Seebeck spin tunneling mechanism. The thermal origin of the spin injection has been confirmed by the quadratic scaling of the spin signal with the Joule heating current and linear dependence with the heating power.
Explore related subjects
Keep this discovery
André Dankert, Saroj P. Dash. 2014-03-14. Thermal Creation of Electron Spin Polarization in n-Type Silicon. https://doi.org/10.1063/1.4845295
Cite the original work for its findings. Save a collection to share your selection of sources.