Half-Metallic Fe2crsi And Non-Magnetic Cu2cral Heusler Alloys For Current-Perpendicular-To-Plane Giant Magneto-Resistance: First Principle And Experimental Study

JOURNAL OF APPLIED PHYSICS(2011)

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摘要
We present results of our first principle and experimental study on new Heusler alloys candidates for half-metallic electrode and nonmagnetic spacer in current-perpendicular-to-plane giant magneto-resistance devices. The electronic structures of Fe2CrSi and Cu2CrAl are characterized by high density of states at the Fermi level in the majority spin band with a good match in their majority band structures near the Fermi level. The calculated interfacial spin polarization in Fe2CrSi/Cu2CrAl (100) superlattice is similar to 80%. We have also epitaxially grown ferromagnetic A2 Fe-Cr-Si and nonmagnetic L21 Cu-Cr-Al (100) films on Cr-buffered MgO(100) substrates. (C) 2011 American Institute of Physics. [doi: 10.1063/1.3540667]
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superlattices,band structure,first principle,giant magnetoresistance,spin polarization,chromium,epitaxial growth,magnetic properties,iron,electronic structure,electron density,giant magneto resistance
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