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Carrier Tuning of Stoner Ferromagnetism in ThCr$_{\mathbf{2}}$Si$_{\mathbf{2}}$-Structure Cobalt Arsenides

Strongly Correlated Electrons 2021-12-30 v2 Materials Science

Abstract

CaCo2y_{2-y}As2_2 is an unusual itinerant magnet with signatures of extreme magnetic frustration. The conditions for establishing magnetic order in such itinerant frustrated magnets, either by reducing frustration or increasing electronic correlations, is an open question. Here we use results from inelastic neutron scattering and magnetic susceptibility measurements and density functional theory calculations to show that hole doping in Ca(Co1x_{1-x}Fex_{x})2y_{2-y}As2_{2} suppresses magnetic order by quenching the magnetic moment while maintaining the same level of magnetic frustration. The suppression is due to tuning the Fermi energy away from a peak in the electronic density of states originating from a flat conduction band. This results in the complete elimination of the magnetic moment by x0.25x\approx0.25, providing a clear example of a Stoner-type transition.

Keywords

Cite

@article{arxiv.2103.05695,
  title  = {Carrier Tuning of Stoner Ferromagnetism in ThCr$_{\mathbf{2}}$Si$_{\mathbf{2}}$-Structure Cobalt Arsenides},
  author = {B. G. Ueland and Santanu Pakhira and Bing Li and A. Sapkota and N. S. Sangeetha and T. G. Perring and Y. Lee and Liqin Ke and D. C. Johnston and R. J. McQueeney},
  journal= {arXiv preprint arXiv:2103.05695},
  year   = {2021}
}

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