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Towards half-metallic interfaces:: Co2CrAl/InP contacts

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JOURNAL OF PHYSICS-CONDENSED MATTER
卷 16, 期 45, 页码 8007-8014

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IOP PUBLISHING LTD
DOI: 10.1088/0953-8984/16/45/022

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Although the interest in half-metallic Hensler alloys, likely to be usable in spintronic applications, has grown considerably, their interfaces with semiconductors show very low spin polarization. I identify mechanisms which can keep high spin polarization at the interface (more than 80% of the electrons at the Fermi level of majority spin) although the half-metallicity is lost. The large enhancement of the Cr moment at the interface between a CrAl-terminated Co2CrAl(001) spacer and the InP(001) semiconductor weakens the effect of the interface states, resulting in this high spin polarization. On the other hand, the Co2CrAl/InP interfaces made up by a Co layer and either an In or a P one show a severe decrease of the Co spin moment, but Cr in the subinterface layer is bulklike and the resulting spin polarization is similar to that of the CrAl-based interfaces.

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