Spin-resolved photoemission of in situ sputtered iron and iron-yttrium alloys

Y. B. Xu, D. Greig, E. A. Seddon, and J. A. D. Matthew
Phys. Rev. B 55, 11442 – Published 1 May 1997
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Abstract

Spin-resolved photoemission spectra of amorphous Fe-Y alloys have been obtained and compared with both those of pure Fe and with theoretical electronic structure calculations. The thin iron and alloy films were prepared by in situ sputtering, and the spectra were obtained using 110-eV photons from the UK Synchrotron Facility. From secondary electron spin hysteresis loops, Fe60Y40 starts to order ferromagnetically well before the lowest temperature accessible with our equipment (114 K), but Fe41Y59 shows no polarization down to this temperature. Although the spin-integrated photoemission spectrum of the valence band of Fe60Y40 shows little difference from that of pure Fe, the spin-resolved spectra are significantly different. Fe60Y40 also exhibits a reduced valence band polarization (14%) compared with iron, and contrary to predictions, the majority spin states of Fe60Y40 dominate at the Fermi edge. No evidence is found for strong ferromagnetism. Unexpectedly, the 1-eV secondary electron polarization of Fe60Y40 (7%) is found to be low compared with the valence band polarization, an effect that may be due to a negative moment on the yttrium.

    DOI:https://doi.org/10.1103/PhysRevB.55.11442

    ©1997 American Physical Society

    Authors & Affiliations

    Y. B. Xu and D. Greig

    • Department of Physics&Astronomy, The University of Leeds, Leeds, LS2 9JT, United Kingdom

    E. A. Seddon

    • Daresbury Laboratory, Daresbury, Warrington, Cheshire, WA4 4AD, United Kingdom

    J. A. D. Matthew

    • Department of Physics, The University of York, Heslington, York, YO1 5DD, United Kingdom

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    Vol. 55, Iss. 17 — 1 May 1997

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