English

First-principles study of magnetism, lattice dynamics, and superconductivity in LaFeSiH$_x$

Superconductivity 2018-06-06 v1

Abstract

The structural, electronic, magnetic, and vibrational properties of LaFeSiHx_x for xx between 0 and 1 are investigated using density functional calculations. We find that the electronic and magnetic properties are strongly controlled by the hydrogen concentration xx in LaFeSiHx_x. While fully hydrogenated LaFeSiH has a striped antiferromagnetic ground state, the underdoped LaFeSiHx_x for x0.75x\leq0.75 is not magnetic within the virtual crystal approximation or with explicit doping of supercells. The antiferromagnetic configuration breaks the symmetry of Fe dd orbitals and increases electron-phonon coupling up to 50%50\%, especially for modes in the 20-50 meV range that are associated with Fe atomic movement. We find competing nearest and next-nearest neighbor exchange interactions and significant spin-phonon coupling, qualitatively similar but smaller in magnitude compared those found in LaOFeAs superconductors. The superconducting TcT_c for antiferromagnetic LaFeSiHx_x, assuming conventional superconductivity via McMillan's equation, therefore is computed to be 2-10 K, in contrast to Tc0T_c\approx0 for the nonmagnetic material. We also predict that the LaFeSiHx_x could be a good proton conductor due to phase stability with a wide range of hydrogen concentration x<1x < 1.

Keywords

Cite

@article{arxiv.1711.01764,
  title  = {First-principles study of magnetism, lattice dynamics, and superconductivity in LaFeSiH$_x$},
  author = {Linda Hung and Taner Yildirim},
  journal= {arXiv preprint arXiv:1711.01764},
  year   = {2018}
}