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Density functional theory study of vacancy induced magnetism in Li$_{3}$N

Materials Science 2018-06-22 v2

Abstract

The effect of lithium vacancies in the hexagonal structure of α\alpha-Li3_3N, is studied within the framework of density functional theory. Vacancies (\square) substituting for lithium in α\alpha-Li2_2(Li1xx_{1-x}\square_x)N are treated within the coherent potential approximation as alloy components. According to our results long range N(pp)-ferromagnetism (1\sim 1 μB\mu_B) sets in for vacancy substitution within the [Li2_2N] layers (x0.7x \ge 0.7) with no significant change in unit cell dimensions. By total energies differences we established that in-plane exchange couplings are dominant. Vacancies substituting inter-plane Li, leads to a considerable structural collapse (c/a0.7c/a \approx 0.7) and no magnetic moment formation.

Keywords

Cite

@article{arxiv.1612.07981,
  title  = {Density functional theory study of vacancy induced magnetism in Li$_{3}$N},
  author = {A. Östlin and L. Chioncel and E. Burzo},
  journal= {arXiv preprint arXiv:1612.07981},
  year   = {2018}
}