The depth-resolved chemical structure and magnetic moment of Co<sub>2</sub>FeAl<sub>0.5</sub>Si<sub>0.5</sub> thin films grown on Si(111) have been determined using x-ray and polarized neutron reflectometry. Bulk-like magnetization is retained across the majority of the film, but reduced moments are observed within 45 Å of the surface and in a 25 Å substrate interface region. The reduced moment is related to with compositional changes due to oxidation and diffusion, which are further quantified by elemental profiling using electron microscopy with electron energy loss spectroscopy. The accuracy of structural and magnetic depth-profiles obtained from simultaneous modeling is discussed using different appro...
The Heusler compound Co2FeSi is a promising material for magneto-electronic devices. With a Curie te...
We determine experimentally the spin structure of half-metallic Co2FeAl0.4Si0.6 Heusler alloy elemen...
We determine experimentally the spin structure of half-metallic Co2FeAl0.4Si0.6 Heusler alloy elemen...
The depth-resolved chemical structure and magnetic moment of Co<sub>2</sub>FeAl<sub&g...
The depth-resolved chemical structure and magnetic moment of Co2FeAl0.5Si0.5, thin films grown on Si...
The half-metallic properties of Heusler alloys make them ideal spin injectors for numerous spintroni...
We have grown thin films of the Heusler compound Co2FeSi by RF magnetron sputtering. On (100)-orient...
Element-specific magnetic properties of ultrathin epitaxial Co2FeSi( 110) films were measured using ...
We have grown thin films of the Heusler compound Co2FeSi by RF magnetron sputtering. On (100)-orient...
The structural and chemical order are the most important parameters governing the physical propertie...
We present a magnetic and structural properties study of epitaxially grown B2-ordered full Heusler C...
We show that Co₂FeAl₀.₅Si₀.₅ film deposited on Si(111) has a single crystal structure and twin relat...
We show that Co2FeAl0.5Si0.5 film deposited on Si(111) has a single crystal structure and twin relat...
We investigate the electronic properties of epitaxial Co2(FexMn1?x)Si, Co2Fe(Al1?xSix), and Co2(Cr0....
We report the deposition of thin Co2FeSi films by RF magnetron sputtering. Epitaxial (1 0 0)-oriente...
The Heusler compound Co2FeSi is a promising material for magneto-electronic devices. With a Curie te...
We determine experimentally the spin structure of half-metallic Co2FeAl0.4Si0.6 Heusler alloy elemen...
We determine experimentally the spin structure of half-metallic Co2FeAl0.4Si0.6 Heusler alloy elemen...
The depth-resolved chemical structure and magnetic moment of Co<sub>2</sub>FeAl<sub&g...
The depth-resolved chemical structure and magnetic moment of Co2FeAl0.5Si0.5, thin films grown on Si...
The half-metallic properties of Heusler alloys make them ideal spin injectors for numerous spintroni...
We have grown thin films of the Heusler compound Co2FeSi by RF magnetron sputtering. On (100)-orient...
Element-specific magnetic properties of ultrathin epitaxial Co2FeSi( 110) films were measured using ...
We have grown thin films of the Heusler compound Co2FeSi by RF magnetron sputtering. On (100)-orient...
The structural and chemical order are the most important parameters governing the physical propertie...
We present a magnetic and structural properties study of epitaxially grown B2-ordered full Heusler C...
We show that Co₂FeAl₀.₅Si₀.₅ film deposited on Si(111) has a single crystal structure and twin relat...
We show that Co2FeAl0.5Si0.5 film deposited on Si(111) has a single crystal structure and twin relat...
We investigate the electronic properties of epitaxial Co2(FexMn1?x)Si, Co2Fe(Al1?xSix), and Co2(Cr0....
We report the deposition of thin Co2FeSi films by RF magnetron sputtering. Epitaxial (1 0 0)-oriente...
The Heusler compound Co2FeSi is a promising material for magneto-electronic devices. With a Curie te...
We determine experimentally the spin structure of half-metallic Co2FeAl0.4Si0.6 Heusler alloy elemen...
We determine experimentally the spin structure of half-metallic Co2FeAl0.4Si0.6 Heusler alloy elemen...