Title: Signature of a highly spin polarized resonance state at Co2MnSi (0 0 1)/Ag (0 0 1) interfaces
Other Titles: Signatúra vysoko spinovo polarizovanéj povrchovej rozonancie na rozhraní Co2MnSi/Ag(001)
Authors: Lidig, Christian
Minár, Jan
Braun, Jürgen
Ebert, Hubert
Gloskovskiǐ, Andrei V.
Kronenberg, Alexander
Kläui, Mathias
Jourdan, Martin
Citation: LIDIG, C., MINÁR, J., BRAUN, J., EBERT, H., GLOSKOVSKIǏ, A. V., KRONENBERG, A., KLÄUI, M., JOURDAN, M. Signature of a highly spin polarized resonance state at Co2MnSi (0 0 1)/Ag (0 0 1) interfaces. Journal of physics d-applied physics, 2018, roč. 51, č. 13, s. nestránkováno. ISSN 0022-3727.
Issue Date: 2018
Publisher: IOP Publishing
Document type: článek
article
URI: 2-s2.0-85044159000
http://hdl.handle.net/11025/34908
ISSN: 0022-3727
Keywords: HAXPES, DFT, povrchová rezonancia, Heuslerové zliatiny
Keywords in different language: HAXPES, DFT, surface resonance, Heusler alloys
Abstract: V tejto publikácii sme študovali polokovú Heuslerovú zliatinu Co2MnSi2 a jej rozhranie s Ag(100) pomocou HAXPES a DFT výpočtou. Porovnaním týchto dvoch metód sme identifikovali elektrónový stav ktorý sa nachádza na rozhraní tźchto dvoch materiálov a má vysokú spinovú polarizáciu ktorá može nájsť uplatnenie v spintronike.
Abstract in different language: We investigated interfaces of halfmetallic Co 2 MnSi(1 0 0) Heusler thin films with Ag(1 0 0), Cr(1 0 0), Cu and Al layers relevant for spin valves by high energy x-ray photoemission spectroscopy (HAXPES). Experiments on Co 2 MnSi samples with an Ag(1 0 0) interface showed a characteristic spectral shoulder feature close to the Fermi edge, which is strongly diminished or suppressed at Co 2 MnSi (1 0 0) interfaces with the other metallic layers. This feature is found to be directly related to the Co 2 MnSi(1 0 0) layer, as reflected by control experiments with reference non-magnetic films, i.e. without the Heusler layer. By comparison with HAXPES calculations, the shoulder feature is identified as originating from an interface state related to a highly spin polarized surface resonance of Co 2 MnSi (1 0 0).
Rights: Plný text není přístupný.
© IOP Publishing
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