A study of the 2D vs 3D growth in c-axis Nd1+xBa2xCu3O7-delta films and a study of the crossover between a-axis to c-axis growth in the Re1+xBa2-xCu3O7-delta (RBCO) family is reported. We found that c-axis stoichiometric Nd1Ba2Cu3O7 films exhibit a 3D layered island-growth, possibly originated by screw and half loop dislocations. On the contrary, a continuous 2D growth is found in off-stoichiometry films, characterised by Nd excess. The amount of a-axis in Nd1+xBa2-xCu3O7 films deposited at different temperatures has been carefully determined by XRD. The experimental results are interpreted in the framework of a theoretical model of the nucleation of RBCO films. The model provides a quantitative description and a satisfactory fit of experimental data from our experiment and from the Current litterature.

A study of the growth mode of Re1+xBa2-xCu3O7-delta (Re = Nd, Y, Sm) epitaxial films deposited by physical vapour deposition

Salluzzo M;Granozio;Aruta;
2000

Abstract

A study of the 2D vs 3D growth in c-axis Nd1+xBa2xCu3O7-delta films and a study of the crossover between a-axis to c-axis growth in the Re1+xBa2-xCu3O7-delta (RBCO) family is reported. We found that c-axis stoichiometric Nd1Ba2Cu3O7 films exhibit a 3D layered island-growth, possibly originated by screw and half loop dislocations. On the contrary, a continuous 2D growth is found in off-stoichiometry films, characterised by Nd excess. The amount of a-axis in Nd1+xBa2-xCu3O7 films deposited at different temperatures has been carefully determined by XRD. The experimental results are interpreted in the framework of a theoretical model of the nucleation of RBCO films. The model provides a quantitative description and a satisfactory fit of experimental data from our experiment and from the Current litterature.
2000
INFM
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/204631
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