BaTiO3/BaZrO3 superlattices with varying periodicities were grown on SrRuO3 buffered MgO (001) substrates by pulsed laser ablation. Ferroelectric measurements were done and correlated to the strain in the heterostructures. The results of ferroelectric measurements indicate an apparent suppression of polarization in the low period superlattices and the onset of weakly ferroelectric behavior in higher period superlattices. Measured switchable polarization values indicate that contribution is primarily from the BaTiO3 in the structure. These results have been correlated to the interfacial strain and the critical thickness of BaTiO3 when grown over tensile substrates such as MgO
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
Artificial superlattices of ferroelectric Bi0.5Na0.5TiO3 and BaTiO3 have been successfully grown on ...
BaTiO3/BaZrO3 superlattices with varying periodicities were grown on SrRuO3 buffered MgO (001) subst...
Ferroelectric superlattice structures consisting of alternating layers of BaTiO3 and SrTiO3 with var...
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...
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...
This work is aimed at studying asymmetric BaTiO31 − xΛ/BaZrO3xΛ ((BT) 1−xΛ/(BZ)xΛ) superlattices, gr...
We have developed a thermodynamic model based on the Landau–Ginzburg theory to study the effect of c...
Artificial superlattices of SrTiO3 and BaZrO3 were grown epitaxially with different periodicities on...
Artificial superlattices of SrTiO3 and BaZrO3 were grown epitaxially with different periodicities on...
High-quality BaTiO3 films with thicknesses ranging from 2.9 to 175 nm were grown epitaxially on SrRu...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
Artificial superlattices of ferroelectric Bi0.5Na0.5TiO3 and BaTiO3 have been successfully grown on ...
BaTiO3/BaZrO3 superlattices with varying periodicities were grown on SrRuO3 buffered MgO (001) subst...
Ferroelectric superlattice structures consisting of alternating layers of BaTiO3 and SrTiO3 with var...
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...
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...
This work is aimed at studying asymmetric BaTiO31 − xΛ/BaZrO3xΛ ((BT) 1−xΛ/(BZ)xΛ) superlattices, gr...
We have developed a thermodynamic model based on the Landau–Ginzburg theory to study the effect of c...
Artificial superlattices of SrTiO3 and BaZrO3 were grown epitaxially with different periodicities on...
Artificial superlattices of SrTiO3 and BaZrO3 were grown epitaxially with different periodicities on...
High-quality BaTiO3 films with thicknesses ranging from 2.9 to 175 nm were grown epitaxially on SrRu...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
8th International Seminar on Ferroelastic Physics (ISFP), Voronezh, RUSSIA, SEP 13-16, 2015Internati...
Artificial superlattices of ferroelectric Bi0.5Na0.5TiO3 and BaTiO3 have been successfully grown on ...