The temperature dependence of the domain-wall coercive field of epitaxial magnetic garnets films has been investigated in the entire temperature range of the ferrimagnetic phase, and has been found to be described by a set of parametric exponents. In subsequent temperature regions different slopes were observed, with breaking points whose position was found to be sample dependent. A survey ba.ed on literature Data as well as on a large number of our own samples shows the general existence of this piecewise exponential dependence and the presence of the breaking points. This type of domain-wall coercive field temperature dependence was found in all samples in the large family of the epitaxial garnets (about 30 specimens of more than t...
The stress dependent magnetic parameters of epitaxial garnet films were measured. Lattice distortion...
The experimental value of the domain wall coercive field does not depend on magnetic parameters and ...
The effect of heat treatment in air atmosphere was investigated on an epitaxially grown magnetic gar...
The temperature dependence of the domain-wall coercive field of epitaxial magnetic garnet films was ...
The coercive properties of magnetically uniaxial liquid-phase epitaxy garnet films were investigated...
The temperature dependence of domain wall coercive field, HCW, of an epitaxial magnetic rare earth g...
The temperature dependence of domain wall coercive field, HCW, of an epitaxial magnetic rare earth g...
Abstract. The temperature dependence of domain wall coercive field, H,,,, of an epitaxial magnetic r...
The steep temperature dependence of the domain wall coercive field. HCW(T), of highly anisotropic ra...
The steep temperature dependence of the domain wall coercive field. HCW(T), of highly anisotropic ra...
Magnetic garnet films represent a wide family of materials. By the proper choice of chemical composi...
Magnetic garnet films represent a wide family of materials. By the proper choice of chemical composi...
The A exchange parameter and its temperature dependence were determined for epitaxially grown magnet...
The temperature dependences of domain wall pinning field and of anisotropy field in magnetic garnets...
The coercivity of epitaxial magnetic garnet films measured by the domain-wall-oscillation methods d...
The stress dependent magnetic parameters of epitaxial garnet films were measured. Lattice distortion...
The experimental value of the domain wall coercive field does not depend on magnetic parameters and ...
The effect of heat treatment in air atmosphere was investigated on an epitaxially grown magnetic gar...
The temperature dependence of the domain-wall coercive field of epitaxial magnetic garnet films was ...
The coercive properties of magnetically uniaxial liquid-phase epitaxy garnet films were investigated...
The temperature dependence of domain wall coercive field, HCW, of an epitaxial magnetic rare earth g...
The temperature dependence of domain wall coercive field, HCW, of an epitaxial magnetic rare earth g...
Abstract. The temperature dependence of domain wall coercive field, H,,,, of an epitaxial magnetic r...
The steep temperature dependence of the domain wall coercive field. HCW(T), of highly anisotropic ra...
The steep temperature dependence of the domain wall coercive field. HCW(T), of highly anisotropic ra...
Magnetic garnet films represent a wide family of materials. By the proper choice of chemical composi...
Magnetic garnet films represent a wide family of materials. By the proper choice of chemical composi...
The A exchange parameter and its temperature dependence were determined for epitaxially grown magnet...
The temperature dependences of domain wall pinning field and of anisotropy field in magnetic garnets...
The coercivity of epitaxial magnetic garnet films measured by the domain-wall-oscillation methods d...
The stress dependent magnetic parameters of epitaxial garnet films were measured. Lattice distortion...
The experimental value of the domain wall coercive field does not depend on magnetic parameters and ...
The effect of heat treatment in air atmosphere was investigated on an epitaxially grown magnetic gar...