Ferroelectric superlattice structures consisting of alternating layers of BaTiO3 and SrTiO3 with variable interlayer thickness were grown on Pt (111)/TiO2/SiO2/Si (100) substrates by pulsed laser deposition. The presence of superlattice reflections in the x-ray diffraction pattern clearly showed the superlattice behavior of the fabricated structures over a range of 6.4–20 nm individual layer thicknesses. Depth profile conducted by secondary ion mass spectrometry analysis showed a periodic concentration of Ba and Sr throughout the film. Polarization hysteresis and the capacitance-voltage characteristics of these films show clear size dependent ferroelectric characteristics. The spontaneous (Ps) and remnant (Pr) polarizations increase gradual...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
Artificial PbTiO3/SrTiO3 superlattices were constructed using off-axis rf magnetron sputtering. X-ra...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
Ferroelectric superlattice structures consisting of alternating layers of BaTiO3 and SrTiO3 with var...
Received 10 January 2007; accepted 6 March 2007; published online 29 May 2007 Ferroelectric superlat...
Received 10 January 2007; accepted 6 March 2007; published online 29 May 2007 Ferroelectric superlat...
Three-component ferroelectric superlattices consisting of alternating layers of SrTiO3, BaTiO3, and ...
Three-component ferroelectric superlattices consisting of alternating layers of SrTiO3, BaTiO3, and ...
We fabricated the three-component ferroelectric superlattices consisting of alternating layers of $S...
We fabricated the three-component ferroelectric superlattices consisting of alternating layers of Sr...
Fabrication of artificially structured superlattices, when controlled on a nanoscale level, can exhi...
We have developed a thermodynamic model based on the Landau–Ginzburg theory to study the effect of c...
BaTiO3/BaZrO3 superlattices with varying periodicities were grown on SrRuO3 buffered MgO (001) subst...
Epitaxial strain is one of the major factors influencing physical properties of artificial superlatt...
Epitaxial strain is one of the major factors influencing physical properties of artificial superlatt...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
Artificial PbTiO3/SrTiO3 superlattices were constructed using off-axis rf magnetron sputtering. X-ra...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
Ferroelectric superlattice structures consisting of alternating layers of BaTiO3 and SrTiO3 with var...
Received 10 January 2007; accepted 6 March 2007; published online 29 May 2007 Ferroelectric superlat...
Received 10 January 2007; accepted 6 March 2007; published online 29 May 2007 Ferroelectric superlat...
Three-component ferroelectric superlattices consisting of alternating layers of SrTiO3, BaTiO3, and ...
Three-component ferroelectric superlattices consisting of alternating layers of SrTiO3, BaTiO3, and ...
We fabricated the three-component ferroelectric superlattices consisting of alternating layers of $S...
We fabricated the three-component ferroelectric superlattices consisting of alternating layers of Sr...
Fabrication of artificially structured superlattices, when controlled on a nanoscale level, can exhi...
We have developed a thermodynamic model based on the Landau–Ginzburg theory to study the effect of c...
BaTiO3/BaZrO3 superlattices with varying periodicities were grown on SrRuO3 buffered MgO (001) subst...
Epitaxial strain is one of the major factors influencing physical properties of artificial superlatt...
Epitaxial strain is one of the major factors influencing physical properties of artificial superlatt...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
Artificial PbTiO3/SrTiO3 superlattices were constructed using off-axis rf magnetron sputtering. X-ra...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...