Spin switching via quantum dot spin valves
Publication date
2018-01-05
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Abstract
We develop a theory for spin transport and magnetization dynamics in a quantum-dot spin valve, i.e., two magnetic reservoirs coupled to a quantum dot. Our theory is able to take into account effects of strong correlations. We demonstrate that, as a result of these strong correlations, the dot gate voltage enables control over the current-induced torques on the magnets, and, in particular, enables voltage-controlled magnetic switching. The electrical resistance of the structure can be used to read out the magnetic state. Our model may be realized by a number of experimental systems, including magnetic scanning-tunneling microscope tips and artificial quantum dot systems.
Keywords
Quantum dots, Spin valves, Coulomb blockade, Spintronics, Landau-Lifschitz-Gilbert equation, Nonequilibrium Green's function, Second quantization
Citation
Gergs, N M, Bender, S A, Duine, R A & Schuricht, D 2018, 'Spin switching via quantum dot spin valves', Physical Review Letters, vol. 120, no. 1, 017701 . https://doi.org/10.1103/PhysRevLett.120.017701