We present experimental XMLD spectra measured on epitaxial (001)-oriented thin Co2FeSi films, which are rich in features and depend sensitively on the degree of atomic order and interdiffusion from capping layers. Al- and Cr-capped films with different degrees of atomic order were prepared by DC magnetron sputtering by varying the deposition temperatures. The local structural properties of the film samples were additionally investigated by nuclear magnetic resonance (NMR) measurements. The XMLD spectra of the different samples show clear and uniform trends at the L3,2L3,2 edges. The Al-capped samples show similar behavior as previous measured XMLD spectra of Co2FeSi0.6Al0.4. Thus, we assume that during deposition Al atoms are being implante...
FeSi is a non-magnetic narrow-gap semiconductor that can be doped n-type by Co, which also gives ris...
The Heusler compound Co2FeSi is a prospective half-metallic material for spintronic applications. De...
10 nm and 50 nm thick Co2FeAl (CFA) thin films have been deposited on thermally oxidized Si(001) sub...
We have grown thin films of the Heusler compound Co2FeSi by RF magnetron sputtering. On (100)-orient...
We have grown thin films of the Heusler compound Co2FeSi by RF magnetron sputtering. On (100)-orient...
Co2FeSi is predicted to be a half-metallic ferromagnet with an extraordinary high magnetic moment an...
Element-specific magnetic properties of ultrathin epitaxial Co2FeSi( 110) films were measured using ...
We report the deposition of thin Co2FeSi films by RF magnetron sputtering. Epitaxial (1 0 0)-oriente...
Co2 MnSi thin films were grown on Al2 O3 (a plane) and GaAs (001) substrates and on thin silicon nit...
The structural and chemical order are the most important parameters governing the physical propertie...
Schmalhorst J-M, Sacher M, Hoeink V, et al. Magnetic and chemical properties of Co2MnSi thin films c...
The Heusler compound Co2FeSi is a promising material for magneto-electronic devices. With a Curie te...
The half-metallic properties of Heusler alloys make them ideal spin injectors for numerous spintroni...
We investigate the electronic properties of epitaxial Co2(FexMn1?x)Si, Co2Fe(Al1?xSix), and Co2(Cr0....
We have investigated the Co-doping dependence of the structural, transport, and magnetic properties ...
FeSi is a non-magnetic narrow-gap semiconductor that can be doped n-type by Co, which also gives ris...
The Heusler compound Co2FeSi is a prospective half-metallic material for spintronic applications. De...
10 nm and 50 nm thick Co2FeAl (CFA) thin films have been deposited on thermally oxidized Si(001) sub...
We have grown thin films of the Heusler compound Co2FeSi by RF magnetron sputtering. On (100)-orient...
We have grown thin films of the Heusler compound Co2FeSi by RF magnetron sputtering. On (100)-orient...
Co2FeSi is predicted to be a half-metallic ferromagnet with an extraordinary high magnetic moment an...
Element-specific magnetic properties of ultrathin epitaxial Co2FeSi( 110) films were measured using ...
We report the deposition of thin Co2FeSi films by RF magnetron sputtering. Epitaxial (1 0 0)-oriente...
Co2 MnSi thin films were grown on Al2 O3 (a plane) and GaAs (001) substrates and on thin silicon nit...
The structural and chemical order are the most important parameters governing the physical propertie...
Schmalhorst J-M, Sacher M, Hoeink V, et al. Magnetic and chemical properties of Co2MnSi thin films c...
The Heusler compound Co2FeSi is a promising material for magneto-electronic devices. With a Curie te...
The half-metallic properties of Heusler alloys make them ideal spin injectors for numerous spintroni...
We investigate the electronic properties of epitaxial Co2(FexMn1?x)Si, Co2Fe(Al1?xSix), and Co2(Cr0....
We have investigated the Co-doping dependence of the structural, transport, and magnetic properties ...
FeSi is a non-magnetic narrow-gap semiconductor that can be doped n-type by Co, which also gives ris...
The Heusler compound Co2FeSi is a prospective half-metallic material for spintronic applications. De...
10 nm and 50 nm thick Co2FeAl (CFA) thin films have been deposited on thermally oxidized Si(001) sub...