Surface electronic structure of polycrystalline and single-crystalline samples of the half-metallic ferromagnet Co₃Sn₂S₂ was studied by means of angle-resolved and core-level photoemissions. The experiments were performed in temperature regimes both above and below a Curie temperature of 176.9 K. The spectroscopic results are compared to local-spin density approximation band-structure calculations for the bulk samples. It is found that the surface sensitive experimental data are generally reproduced by the bulk computation suggesting that the theoretically predicted half-metallic properties of Co₃Sn₂S₂ are retained at the surface
Heusler compounds are promising materials for spintronics with adjustable electronic properties incl...
International audienceCo3Sn2S2 has been established as a prototype of magnetic Weyl semimetal, exhib...
Based on the density functional theory, we examine the origin of ferromagnetism in the Weyl semimeta...
Surface electronic structure of polycrystalline and single-crystalline samples of the half-metallic ...
Angle-resolved and energy-dependent photoemission was used to study the band structure of paramagnet...
Angle-resolved photoemission was used to study the surface electronic band structure of high quality...
Angle-resolved photoemission was used to study the surface electronic band structure of high quality...
The pyrite-type transition metal compound CoS2 is an itinerant electron ferromagnet and is predicted...
Ferromagnetic thin films of Heusler compounds are highly relevant for spintronic applications owing ...
In this study, first principles calculation results of the half-metallic ferromagnetic Heusler compo...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
In this study, first principles calculation results of the half-metallic ferromagnetic Heusler compo...
Single crystalline Sn2Co3S2 with the shandite-type structure was investigated by magnetization, magn...
The electronic structure and half-metallic gap of Co2MnSi in the presence of crystallographic defect...
Ultraviolet-photoemission spectroscopy has been employed to investigate the valence-band electronic ...
Heusler compounds are promising materials for spintronics with adjustable electronic properties incl...
International audienceCo3Sn2S2 has been established as a prototype of magnetic Weyl semimetal, exhib...
Based on the density functional theory, we examine the origin of ferromagnetism in the Weyl semimeta...
Surface electronic structure of polycrystalline and single-crystalline samples of the half-metallic ...
Angle-resolved and energy-dependent photoemission was used to study the band structure of paramagnet...
Angle-resolved photoemission was used to study the surface electronic band structure of high quality...
Angle-resolved photoemission was used to study the surface electronic band structure of high quality...
The pyrite-type transition metal compound CoS2 is an itinerant electron ferromagnet and is predicted...
Ferromagnetic thin films of Heusler compounds are highly relevant for spintronic applications owing ...
In this study, first principles calculation results of the half-metallic ferromagnetic Heusler compo...
Co3Sn2S2 is a magnetic Weyl semimetal, in which ferromagnetic ordering at 177K is predicted to stabi...
In this study, first principles calculation results of the half-metallic ferromagnetic Heusler compo...
Single crystalline Sn2Co3S2 with the shandite-type structure was investigated by magnetization, magn...
The electronic structure and half-metallic gap of Co2MnSi in the presence of crystallographic defect...
Ultraviolet-photoemission spectroscopy has been employed to investigate the valence-band electronic ...
Heusler compounds are promising materials for spintronics with adjustable electronic properties incl...
International audienceCo3Sn2S2 has been established as a prototype of magnetic Weyl semimetal, exhib...
Based on the density functional theory, we examine the origin of ferromagnetism in the Weyl semimeta...