Journal of Metallurgy and Materials Science
  • Year: 2011
  • Volume: 53
  • Issue: 3

A first principle numerical approach to spin dependent transport

  • Author:
  • Raj Kumar Singh, Kumari Mamta1, J.N. Prasad2
  • Total Page Count: 13
  • Page Number: 275 to 287

1Department of Physics, ICFAI University, Ranchi, Jharkhand, India

2University Department of Physics, Ranchi University, Ranchi, Jharkhand, India.

Department of Physics, RLSY College, Ranchi University, Ranchi, Jharkhand, India.

Online published on 8 February, 2012.

Abstract

The effects like magnetoresistance (MR) of a magnetic junction or efficiency of spin injection from ferromagnet (FM) into semiconductor (SC) are the manifestations of spin-dependent transport in complicated multilayered structures and arises due to the spin filtering at ferromagnetic and nonmagnetic metal layers (FM/NM) or ferromagnetic and nonmagnetic insulator (FM/I) or ferromagnet and semiconductor (FM/SC) interfaces. For accurate description of the electronic and structural properties of such interfaces as well as their bulk materials various numerical methods like Density Functional Theory (DFT), Tight Binding-Muffin Tin Orbitals (TB-MTO), Wave Function Matching (WFM), Landauer-Buttiker Approach (LBA) are in use. We review these numerical methods in this paper.

Keywords

Magnetoresistance, Magnetic junction, Spin injection, Mumerical methods