May 17, 2024

Vahid Fallahi

Academic rank: Associate professor
Address: Department of Photonics, University of Bonab, Bonab 5551761167, Iran
Education: Ph.D in Photonics
Phone: 04137745000 - 1641
Faculty: Faculty of Science
Department: Photonics

Research

Title
Spin density and spin torque induced by the D’yakonov-Perel’ mechanism in magnetic semiconductor nanowires with a constriction
Type Article
Keywords
Domain Walls, Spin-orbit interaction, magnetic semiconductor, Nanoconstriction
Researchers Vahid Fallahi

Abstract

The transport through a domain wall pinned at a nanoconstriction in (Ga,Mn)As wires is investigated theoretically using the Landauer-B{\"u}ttiker approach by considering the Rashba and Dresselhaus spin-orbit interactions. The local nonequilibrium spin densities produced by electrical spin injection at the nanoconstriction are calculated numerically along the nanowire. The adiabatic and nonadiabatic components of the spin-transfer torque, expressed in terms of the gradient of the spin current density, are also computed. It is observed an oscillatory behavior in the spin-transfer torque for the systems containing atomically sharp domain walls, due to the strong reflections at the domain wall caused by the large magnetization gradient. It is demonstrated that the strength of the oscillations for nonadiabatic spin torque increases by the negative Rashba parameter $\alpha_x$, while it decreases as increasing the positive values of $\alpha_x$. However, the nonadiabatic spin torque increases with $\left|\alpha_y\right|$, regardless of its sign. Furthermore, it is shown that the Dresselhaus coupling $\beta$ does not considerably alter the $z$-component of the spin torque, while the other two components are effectively changed by the Dresselhaus spin-orbit interaction.