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Spin-polarization in a 3-terminal conductor induced by Rashba spin–orbit coupling
Authors:M. Yamamoto   J. Ohea   T. Ohtsuki   J. Nitta  B. Kramer
Affiliation:aI.Institut für Theoretische Physik, Universität Hamburg, Jungiusstraße 9, 20355 Hamburg, Germany;bDepartment of Physics, Sophia University, Kioi-cho 7-1, Chiyoda-ku, Tokyo 102-8554, Japan;cNTT Basic Research Laboratories, Wakamiya 3-1, Morinosato, Atsugi-shi, Kanagawa 243-0198, Japan;dCREST-JST, Honcho 4-1-8, Kawaguchi-shi, Saitama 332-0012, Japan
Abstract:We investigate numerically the spin polarization of the current in the presence of Rashba spin–orbit interaction (RSOI) in a 3-terminal conductor. We use equation-of-motion method to simulate the time evolution of the wave packet and focus on single-channel transport. A T-shaped conductor with uniform RSOI proposed by Kiselev and Kim and a Y-shaped conductor with nonuniform RSOI are considered. In the T-shaped conductor, the strength of RSOI is assumed to be uniform. We have found that the spin polarization becomes nearly 100% with little loss of conductance for sufficiently strong spin–orbit coupling. This is due to the spin-dependent group velocity of electrons at the junction which causes the spin separation. In the Y-shaped conductor, the strength of RSOI is modulated perpendicular to the charge current. A spatial gradient of effective magnetic field due to the nonuniform RSOI causes the Stern–Gerlach type spin separation. The direction of the polarization is perpendicular to the current and parallel to the spatial gradient. Again almost 100% spin polarization can be realized by this spin separation.
Keywords:Spin polarization   Rashba spin–  orbit interaction   A 3-terminal conductor
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