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Quantifying the critical thickness of electron hybridization in spintronics materials

Articolo
Data di Pubblicazione:
2017
Abstract:
In the rapidly growing field of spintronics, simultaneous control of electronic and magnetic properties is essential, and the perspective of building novel phases is directly linked to the control of tuning parameters, for example, thickness and doping. Looking at the relevant effects in interface-driven spintronics, the reduced symmetry at a surface and interface corresponds to a severe modification of the overlap of electron orbitals, that is, to a change of electron hybridization. Here we report a chemically and magnetically sensitive depth-dependent analysis of two paradigmatic systems, namely La(1-x)Sr(x)MnO"3 and (Ga,Mn)As. Supported by cluster calculations, we find a crossover between surface and bulk in the electron hybridization/correlation and we identify a spectroscopic fingerprint of bulk metallic character and ferromagnetism versus depth. The critical thickness and the gradient of hybridization are measured, setting an intrinsic limit of 3 and 10 unit cells from the surface, respectively, for (Ga,Mn)As and La(1-x)Sr(x)MnO"3, for fully restoring bulk properties.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
METAL-INSULATOR TRANSITION; PHOTOEMISSION SPECTROSCOPY; MAGNETIC SEMICONDUCTOR; PEROVSKITE MANGANITE
Elenco autori:
Rossi, Giorgio; Graziosi, Patrizio; Petrov, Aleksandr; Ciprian, Roberta; Vinai, GIOVANNI MARIA; Pincelli, Tommaso; Lollobrigida, Valerio; Cavallini, Massimiliano; Panaccione, Giancarlo; MILETTO GRANOZIO, Fabio; Borgatti, Francesco
Autori di Ateneo:
BORGATTI FRANCESCO
CAVALLINI MASSIMILIANO
GRAZIOSI PATRIZIO
PANACCIONE GIANCARLO
PETROV ALEKSANDR
VINAI GIOVANNI MARIA
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/370658
Pubblicato in:
NATURE COMMUNICATIONS
Journal
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URL

https://www.nature.com/articles/ncomms16051
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