English

Spin-valley half-metal as a prospective material for spin-valley-tronics

Strongly Correlated Electrons 2019-03-06 v1 Mesoscale and Nanoscale Physics

Abstract

Half-metallicity (full spin polarization of the Fermi surface) usually occurs in strongly correlated electron systems. We demonstrate that doping a spin-density wave insulator in the weak-coupling regime may also stabilize half-metallic states. The undoped spin-density wave is formed by four nested bands [i.e., each band is characterized by charge (electron/hole) and spin (up/down) labels]. Of these four bands only two accumulate the doped carriers, forming a half-metallic two-valley Fermi surface. Depending on parameters, the spin polarizations of the electron-like and hole-like valleys may be (i) parallel or (ii) antiparallel. The Fermi surface of (i) is fully spin-polarized (similar to usual half-metals). Case (ii), referred to as "a spin-valley half-metal", corresponds to complete polarization with respect to the spin-valley operator. The properties of these states are discussed.

Keywords

Cite

@article{arxiv.1704.01727,
  title  = {Spin-valley half-metal as a prospective material for spin-valley-tronics},
  author = {A. V. Rozhkov and A. L. Rakhmanov and A. O. Sboychakov and K. I. Kugel and F. Nori},
  journal= {arXiv preprint arXiv:1704.01727},
  year   = {2019}
}

Comments

6 pages, 2 eps figures