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Type: 
Journal
Description: 
The effect of the proximity of Au nanoparticles on the transport and magnetic properties of ultrathin La2/3Sr1/3MnO3 (LSMO) films has been investigated. We find a huge increase of the resistivity of the manganite (by four orders of magnitude for a Au nominal thickness of 2 nm), which is accompanied by a strong decrease of the Curie temperature. A combined scanning transmission electron microscopy and electron energy loss spectroscopy (STEM-EELS) analysis shows that interfaces are coherent and atomically sharp, and that the structural quality is very high. On the other end, a strong reduction of the Mn oxidation state is seen upon Au capping. NMR data show a strong attenuation of the double exchange signal upon formation of Au nanoparticles. Ab-initio calculations indicate a negligible influence of Au on LSMO at an ideal interface, with the LSMO surface magnetic and electronic properties essentially unchanged upon creation of the Au/LSMO interface. In view of these calculations, the experimental results cannot be explained in terms of purely electrostatic effects induced by the proximity of a noble metal. Here we propose that the main driving force underlying the observed change in physical properties is the high reactivity of Au nanoparticles which can locally pump more»
Publisher: 
Oak Ridge National Lab.(ORNL), Oak Ridge, TN (United States)
Publication date: 
1 Jan 2010
Authors: 

S Brivio, Cesar Magen Dominguez, A Sidorenko, D Petti, M Cantoni, M Finazzi, F Ciccacci, R Renzi, Maria Varela del Arco, S Picozzi, R Bertacco

Biblio References: 
Volume: 81 Issue: 9
Origin: 
Physical Review B