Electrical detection of the inverse Edelstein effect on the surface of SmB
arXiv:2006.11682 · doi:10.1103/PhysRevB.102.054410
Abstract
We report the measurement of spin current induced charge accumulation, the inverse Edelstein effect (IEE), on the surface of a candidate topological Kondo insulator SmB6 single crystal. Robust surface conduction channel of SmB6 has been shown to exhibit large degree of spin-momentum locking, and spin polarized current through an external ferromagnetic contact induces the spin dependent charge accumulation on the surface of SmB6. The dependences of the IEE signal on the bias current, an external magnetic field direction and temperature are consistent with the anticlockwise spin texture for the surface band in SmB6 in the momentum space, and the direction and magnitude of the effect compared with the normal Edelstein signal are clearly explained by the Onsager reciprocal relation. Furthermore, we estimate spin-to-charge conversion efficiency, the IEE length, as 4.46 nm that is an order of magnitude larger than the efficiency found in other typical Rashba interfaces, implying that the Rashba contribution to the IEE signal could be small. Building upon existing reports on the surface charge and spin conduction nature on this material, our results provide additional evidence that the surface of SmB6 supports spin polarized conduction channel.
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References in corpus (9)
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Electrically detected interferometry of Majorana fermions in a topological insulator
- Rapid Surface Oxidation as a Source of Surface Degradation Factor for Bi2Se3
- Direct observation of the spin texture in strongly correlated SmB6 as evidence of the topological Kondo insulator
- Tuning bulk and surface conduction in topological Kondo insulator SmB6
- Onsager Relations in Coupled Electric, Thermoelectric and Spin Transport: The Ten-Fold Way
- Spin Injection and Inverse Edelstein Effect in the Surface States of Topological Kondo Insulator SmB6
- Quantitative investigation of the inverse Rashba-Edelstein effect in Bi/Ag and Ag/Bi on YIG
- Model Hamiltonian for topological Kondo insulator SmB6