We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyScO3 with low thicknesses (up to 240 nm), which fall outside the validity range of the square root law proposed by Roytburd. For slow-grown films, the data reveal the linear thickness dependence predicted by Pertsev and Zembilgotov, using a complete elastic description, while a 2/3 scaling exponent is found for fast-grown films. Extremely long domains running all through the samples have been observed in the latter case, compared to the short domains observed in slow-grown films. These differences are ascribed to the in-plane anisotropy for domain wall nucleation, which is likely caused by the anisotropic elastic modulus of the substrate. (C) ...
Epitaxial PbTiO(3) thin films were grown on SrTiO(3)(001) and DyScO(3)(110) substrates by pulsed las...
Epitaxial PbTiO(3) thin films were grown on SrTiO(3)(001) and DyScO(3)(110) substrates by pulsed las...
This work demonstrates that instead of paraelectric PbTiO(3), completely c-oriented ferroelectric Pb...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
In epitaxial ferroelectric thin films under tensile strain, a transition from 180 degrees domains to...
In epitaxial ferroelectric thin films under tensile strain, a transition from 180 degrees domains to...
In epitaxial ferroelectric thin films under tensile strain, a transition from 180 degrees domains to...
Extremely regular self-organized patterns of 90A degrees ferroelastic domains have been reported in ...
Extremely regular self-organized patterns of 90A degrees ferroelastic domains have been reported in ...
In epitaxial ferroelectric thin films under tensile strain, a transition from 180 degrees domains to...
Epitaxial PbTiO(3) thin films were grown on SrTiO(3)(001) and DyScO(3)(110) substrates by pulsed las...
Epitaxial PbTiO(3) thin films were grown on SrTiO(3)(001) and DyScO(3)(110) substrates by pulsed las...
Epitaxial PbTiO(3) thin films were grown on SrTiO(3)(001) and DyScO(3)(110) substrates by pulsed las...
This work demonstrates that instead of paraelectric PbTiO(3), completely c-oriented ferroelectric Pb...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
We report on the thickness dependence of the ferroelastic domains of PbTiO3 films grown on (110)-DyS...
In epitaxial ferroelectric thin films under tensile strain, a transition from 180 degrees domains to...
In epitaxial ferroelectric thin films under tensile strain, a transition from 180 degrees domains to...
In epitaxial ferroelectric thin films under tensile strain, a transition from 180 degrees domains to...
Extremely regular self-organized patterns of 90A degrees ferroelastic domains have been reported in ...
Extremely regular self-organized patterns of 90A degrees ferroelastic domains have been reported in ...
In epitaxial ferroelectric thin films under tensile strain, a transition from 180 degrees domains to...
Epitaxial PbTiO(3) thin films were grown on SrTiO(3)(001) and DyScO(3)(110) substrates by pulsed las...
Epitaxial PbTiO(3) thin films were grown on SrTiO(3)(001) and DyScO(3)(110) substrates by pulsed las...
Epitaxial PbTiO(3) thin films were grown on SrTiO(3)(001) and DyScO(3)(110) substrates by pulsed las...
This work demonstrates that instead of paraelectric PbTiO(3), completely c-oriented ferroelectric Pb...