We report on a new method to determine the degree of bulk spin polarization in single crystal Co(1−x)FexS2 by modeling magnetic Compton scattering with {\it ab initio} calculations. Spin-dependent Compton profiles were measured for CoS2 and Co0.9Fe0.1S2. The {\it ab initio} calculations were then refined by rigidly shifting the bands to provide the best fit between the calculated and experimental directional profiles for each sample. The bulk spin polarizations, P, corresponding to the spin-polarized density of states at the Fermi level, were then extracted from the {\it refined} calculations. The values were found to be P=−72±6 and P=18±7 for CoS2 and Co0.9Fe0.1S2 respectively. Furthermore, determinations of P weighted by the Fermi velocity (vF or vF2) were obtained, permitting a rigorous comparison with other experimental data and highlighting the experimental dependence of P on vF.
@article{arxiv.0911.5251,
title = {Bulk Spin Polarization of Co$_{(1-x)}$Fe$_x$S$_2$},
author = {C. Utfeld and S. R. Giblin and J. W. Taylor and J. A. Duffy and C. Shenton-Taylor and J. Laverock and S. B. Dugdale and M. Manno and C. Leighton and M. Itou and Y. Sakurai},
journal= {arXiv preprint arXiv:0911.5251},
year = {2015}
}