[[abstract]]An artificial superlattice of BaTiO3/LaNiO3 (BTO/LNO) was grown epitaxially on an Nb-doped SrTiO3 (001) single-crystalline substrate with a dual-gun rf magnetron sputtering system. The structural characteristics of the superlattice films were studied mainly by X-ray reflectivity. Formation of a superlattice structure was confirmed from the appearance of Bragg peaks separated by Kiessig fringes in X-ray reflectivity curves and a crystal truncation rod (CTR) spectrum. The surface and interfacial roughness of the superlattice were derived from the fitted curves for specular reflectivity. A conformal relationship between consecutive BTO and LNO layers was observed from off-specular scattering. According to the fitted results and ato...
Epitaxial strain is one of the major factors influencing physical properties of artificial superlatt...
Received 10 January 2007; accepted 6 March 2007; published online 29 May 2007 Ferroelectric superlat...
Ferroelectric superlattice structures consisting of alternating layers of BaTiO3 and SrTiO3 with var...
[[abstract]]Artificial superlattices consisting of ferroelectric BaTiO3 (BTO) and conductive LaNiO3 ...
[[abstract]]The evolution of surface and interface roughness during heteroepitaxial growth of strain...
[[abstract]]The onset of lattice strain relaxation against the number of bilayers (N) in an epitaxia...
[[abstract]]Artificial superlattices consisting of dielectric Ba0.48Sr0.52TiO3 (BST) and conductive ...
[[abstract]]Artificial superlattices consisting of ferroelectric BaTiO3 (BTO), and conductive LaNiO3...
J.M. TRISCONE Professeur, Université de Genève Rapporteur R. GUINEBRETIERE Maître de Conférences, Un...
[[abstract]]High-quality heteroepitaxial LaNiO3 (LNO) thin films were successfully grown on SrTiO3 (...
[[abstract]]We formed strained artificial superlattices of BaTiO3/LaNiO 3(BTO/LNO) and (Ba0.48Sr0.52...
[[abstract]]High-quality heteroepitaxial LaNiO3 (LNO) thin films were successfully grown on SrTiO3 (...
We studied the phase transitions, domain morphologies, and polarizations in BaTiO3/SrTiO3 superlatti...
We studied the phase transitions, domain morphologies, and polarizations in BaTiO(3)/SrTiO(3) superl...
The morphology and microstructure of BaTiO3/SrTiO3 (BTO/STO) superlattices grown epitaxially on STO ...
Epitaxial strain is one of the major factors influencing physical properties of artificial superlatt...
Received 10 January 2007; accepted 6 March 2007; published online 29 May 2007 Ferroelectric superlat...
Ferroelectric superlattice structures consisting of alternating layers of BaTiO3 and SrTiO3 with var...
[[abstract]]Artificial superlattices consisting of ferroelectric BaTiO3 (BTO) and conductive LaNiO3 ...
[[abstract]]The evolution of surface and interface roughness during heteroepitaxial growth of strain...
[[abstract]]The onset of lattice strain relaxation against the number of bilayers (N) in an epitaxia...
[[abstract]]Artificial superlattices consisting of dielectric Ba0.48Sr0.52TiO3 (BST) and conductive ...
[[abstract]]Artificial superlattices consisting of ferroelectric BaTiO3 (BTO), and conductive LaNiO3...
J.M. TRISCONE Professeur, Université de Genève Rapporteur R. GUINEBRETIERE Maître de Conférences, Un...
[[abstract]]High-quality heteroepitaxial LaNiO3 (LNO) thin films were successfully grown on SrTiO3 (...
[[abstract]]We formed strained artificial superlattices of BaTiO3/LaNiO 3(BTO/LNO) and (Ba0.48Sr0.52...
[[abstract]]High-quality heteroepitaxial LaNiO3 (LNO) thin films were successfully grown on SrTiO3 (...
We studied the phase transitions, domain morphologies, and polarizations in BaTiO3/SrTiO3 superlatti...
We studied the phase transitions, domain morphologies, and polarizations in BaTiO(3)/SrTiO(3) superl...
The morphology and microstructure of BaTiO3/SrTiO3 (BTO/STO) superlattices grown epitaxially on STO ...
Epitaxial strain is one of the major factors influencing physical properties of artificial superlatt...
Received 10 January 2007; accepted 6 March 2007; published online 29 May 2007 Ferroelectric superlat...
Ferroelectric superlattice structures consisting of alternating layers of BaTiO3 and SrTiO3 with var...