The ferroelastic domain structure and the phase boundaries of TMCC have been studied in the temperature range 114-90 K by direct observation under polarised light. By applying an external, compressive and unidirectional mechanical stress the ferroelastic character of the domain structure has been confirmed. The orientation of the domain walls and phase boundaries are analysed. To characterise quantitatively the observed domain wall distribution the classical symmetry approach, based on the criterion of spontaneous strain compatibility, has to be extended to allow small rotations of the domain walls with respect to their ideal orientation. The observed switching process among the different domains can be understood as a mechanism that minim...
For structural transitions with strain serving as the transition primary order parameter (proper fer...
The extent and nature of ferroelastic re-orientation in a BaTiO3 ceramic under compressive stresses ...
Ferroelastic LaAlO3 (space group R3¯c) exists with two different microstructures: twins and tweed. B...
We report on observation of ferroelastic domain structure in single crystals of multiferroic CaMn7O1...
Experimental observations and some theoretical models for the propagation of ferroelastic domain bou...
Theoretical analysis of the ferro-elastic domain structure of a $La_{0.95}Sr_{0.05}Ga_{0.9}Mg_{0.1}O...
The ferroelastic domains of the orthorhombic phase of YBa2Cu3O7-δ were obsd. in polarized light on c...
International audienceA compressive uniaxial mechanical stress is applied on ferroelastic CaTiO3 (CT...
Unique ferroelastic polytwin domains are formed in epitaxial ferroelectric thin films prepared on si...
This paper deals with the identification of multidomain configuration in ferroelastic phases of $La_...
Starting with the basics of anisotropic elasticity, dedicated focus is put on bending and twisting o...
A short overview is given on recent polarized light microscopy studies of the orthorhombic ferroelas...
The investigation objects are the domain boundaries of ferro- and anti-ferromagnetics. The aim is to...
The microscopic domain structures in 2D ferroelectrics under applied biaxial strains are investigate...
ABSTRACT: The phase transition of BiVO4 crystals with prominent W-domain walls was investigated by c...
For structural transitions with strain serving as the transition primary order parameter (proper fer...
The extent and nature of ferroelastic re-orientation in a BaTiO3 ceramic under compressive stresses ...
Ferroelastic LaAlO3 (space group R3¯c) exists with two different microstructures: twins and tweed. B...
We report on observation of ferroelastic domain structure in single crystals of multiferroic CaMn7O1...
Experimental observations and some theoretical models for the propagation of ferroelastic domain bou...
Theoretical analysis of the ferro-elastic domain structure of a $La_{0.95}Sr_{0.05}Ga_{0.9}Mg_{0.1}O...
The ferroelastic domains of the orthorhombic phase of YBa2Cu3O7-δ were obsd. in polarized light on c...
International audienceA compressive uniaxial mechanical stress is applied on ferroelastic CaTiO3 (CT...
Unique ferroelastic polytwin domains are formed in epitaxial ferroelectric thin films prepared on si...
This paper deals with the identification of multidomain configuration in ferroelastic phases of $La_...
Starting with the basics of anisotropic elasticity, dedicated focus is put on bending and twisting o...
A short overview is given on recent polarized light microscopy studies of the orthorhombic ferroelas...
The investigation objects are the domain boundaries of ferro- and anti-ferromagnetics. The aim is to...
The microscopic domain structures in 2D ferroelectrics under applied biaxial strains are investigate...
ABSTRACT: The phase transition of BiVO4 crystals with prominent W-domain walls was investigated by c...
For structural transitions with strain serving as the transition primary order parameter (proper fer...
The extent and nature of ferroelastic re-orientation in a BaTiO3 ceramic under compressive stresses ...
Ferroelastic LaAlO3 (space group R3¯c) exists with two different microstructures: twins and tweed. B...