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Spin-dependent magnetotransport through one or more rings in the presence of the Rashba and Dresselhaus terms of the spin–orbit interaction
Authors:P. Vasilopoulos  X.F. Wang  
Affiliation:aDepartment of Physics, Concordia University, 7141 Sherbrooke Ouest, Montréal, Qué., Canada H4B 1R6
Abstract:Magnetotransport through one or several quasi-one-dimensional rings, in the presence of the Rashba (RSOI) and Dresselhaus (DSOI) terms of the spin–orbit interaction (SOI) and of a magnetic field B, is investigated. The RSOI field and an effective DSOI field are taken as ER=ER(sinγ1er+cosγ1ez) and ED=ED(sinγ2er+cosγ2ez), their strengths are denoted by α and β, respectively. The exact one-electron eigenvalues and eigenfunctions are obtained and used to evaluate the transmission as a function of α, β, and of the angles γ1,γ2. Because the RSOI term couples the electronic orbit (along the θ direction) with the Pauli matrices σz and σr while the DSOI term couples it with σθ, they affect the electronic spin transport through a ring in distinctly different ways. The resulting transmission shows a considerable structure as a function of the angles γ1 or γ2. The same holds for the transmission, versus α or β, with the SOI present only in one arm of the ring and for that through two rings with the same or different radii. Various results of the literature, valid for β=0, are readily recovered. For weak magnetic fields View the MathML source the influence of the Zeeman term on the transmission, assessed by perturbation theory, is negligible.
Keywords:Spin–  orbit interaction   Quasi-one-dimensional ring   Aharonov–  Casher phase   Transmission   Spin precession
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