Tuning the spin of Dirac fermions on the surface of topological insulators in proximity to a helical spin density wave

Author:

Yar AbdullahORCID,Taif Usman Muhammad,Sabeeh Kashif

Abstract

Abstract We investigate the spin tunability of Dirac fermions on the surface of a 3D topological insulator in proximity to a helical spin density wave, acting as an applied one-dimensional periodic potential for spins produced by spiral multiferroic oxide. It is observed that the spin mean values of Dirac fermion undergo oscillations under the influence of such a periodic potential created by the exchange field of magnetization. The tunability of spin is strongly affected by the strength, orientation and period of the exchange field. In particular, the mean values of spin are anisotropic around the Dirac point, depending strongly on the amplitude and spatial period of the periodic potential. We also find that the spin expectation values change significantly by changing the plane of magnetization. Interestingly, the in-plane components of spin mean values perform pronounced oscillations, whereas the out of plane component does not oscillate at all. The oscillations of planar components of spin are originated from the spin-momentum locking on the surface of topological insulator.

Funder

Higher Education Commision, Pakistan

Publisher

IOP Publishing

Subject

Condensed Matter Physics,General Materials Science

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