TbMnO3 films have been grown under compressive strain on (001)-oriented SrTiO3 crystals. They have an orthorhombic structure and display the (001) orientation. With increasing thickness, the structure evolves from a more symmetric (tetragonal) to a less symmetric (bulk-like orthorhombic) structure, while keeping constant the in-plane compression, thereby leaving the out-of-plane lattice spacing unchanged. The domain microstructure of the films is also revealed, showing an increasing number of orthorhombic domains as the thickness is decreased: we directly observe ferroelastic domains as narrow as 4 nm. The high density of domain walls may explain the induced ferromagnetism observed in the films, while both the decreased anisotropy and the s...
Understanding the magnetotransport properties of epitaxial strained thin films requires knowledge of...
The Ph.D. thesis reports on the experimental investigation of the structure and physical properties ...
Thin films of PbTiO3, a classical ferroelectric, have been grown under tensile strain on single-crys...
TbMnO3 films have been grown under compressive strain on (001)-oriented SrTiO3 crystals. They have a...
TbMnO3 films have been grown under compressive strain on\ud (001)-oriented SrTiO3 crystals. They hav...
TbMnO3 films have been grown under compressive strain on (001)-oriented SrTiO3 crystals. They have a...
TbMnO(3) films have been grown under compressive strain on (001)-oriented SrTiO(3) crystals. They ha...
Control of the domain structures in multiferroic thin films is of crucial importance in order to gai...
Thin films of TbMnO3 have been grown on SrTiO3 substrates. The films grow under compressive strain a...
cited By 68International audienceProgress in nanotechnology requires new approaches to materials syn...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
In addition to the distinct internal symmetry of domain walls discussed in Chapter 1, local stresses...
A previously unreported tetragonal phase has been discovered in a epitaxially strained GdMnO3 thin f...
Understanding the magnetotransport properties of epitaxial strained thin films requires knowledge of...
The Ph.D. thesis reports on the experimental investigation of the structure and physical properties ...
Thin films of PbTiO3, a classical ferroelectric, have been grown under tensile strain on single-crys...
TbMnO3 films have been grown under compressive strain on (001)-oriented SrTiO3 crystals. They have a...
TbMnO3 films have been grown under compressive strain on\ud (001)-oriented SrTiO3 crystals. They hav...
TbMnO3 films have been grown under compressive strain on (001)-oriented SrTiO3 crystals. They have a...
TbMnO(3) films have been grown under compressive strain on (001)-oriented SrTiO(3) crystals. They ha...
Control of the domain structures in multiferroic thin films is of crucial importance in order to gai...
Thin films of TbMnO3 have been grown on SrTiO3 substrates. The films grow under compressive strain a...
cited By 68International audienceProgress in nanotechnology requires new approaches to materials syn...
This article may be downloaded for personal use only. Any other use requires prior permission of the...
In addition to the distinct internal symmetry of domain walls discussed in Chapter 1, local stresses...
A previously unreported tetragonal phase has been discovered in a epitaxially strained GdMnO3 thin f...
Understanding the magnetotransport properties of epitaxial strained thin films requires knowledge of...
The Ph.D. thesis reports on the experimental investigation of the structure and physical properties ...
Thin films of PbTiO3, a classical ferroelectric, have been grown under tensile strain on single-crys...