Flux distributions in a YBa2Cu3O7- thin film with artificial granularity are observed by means of magneto-optic imaging. At low magnification, flux patterns generated exclusively by the intergranular currents flowing in the intergranular area (effective medium) are directly observed. The properties of this effective medium are studied by taking flux density profiles that reveal the intergranular current density. As the observations at high magnifications show the flux penetration and pinning within the individual disks, we can identify and study the different contributions of the intergranular and intragranular current densities to the flux patterns. We show that our model sample reproduces several features observed, e.g., in Ag-sheathed (P...
By implementing a unique magneto-optical system with ultrafast magnetic-field ramping-rate capabilit...
Abstract-Flux penetration in large area YBCO thin films has been studied by a magneto-optical scanni...
By implementing a unique magneto-optical system with ultrafast magnetic-field ramping-rate capabilit...
A YBa2Cu3O7- (YBCO) thin film is patterned into a hexagonal close packed lattice of disks which are ...
A YBa2Cu3O7- thin film is patterned into a hexagonal close-packed lattice of disks (2r=50 m) which a...
Honeycomb arrays (cells approximate to 50 mum in size) were patterned in a YBa2Cu3Oy thin film in or...
A magneto-optical apparatus has been designed to investigate flux and current distributions in vario...
Recent studies on the magneto-optical (MO) imaging of the magnetic flux and current distributions in...
The dynamics of magnetic flux distributions across a YBa2Cu3O7−δ strip carrying transport current is...
Magneto-optical imaging was used to visualize the inhomogeneous penetration of mag-netic flux into p...
An efficient non-destructive magneto-optic imaging system was developed that employs special iron-g...
We present the results of experiments on visualization of magnetic flux distribution and its dynamic...
We have investigated the magnetic field distribution in epitaxial YBa2Cu3O7-x films on square SrTiO3...
Using magneto-optical visualization, individual 2 μm diameter antidots (circular holes) in YB
In the past few years magneto-optical flux imaging (MOI) has come to take an increasing role in the...
By implementing a unique magneto-optical system with ultrafast magnetic-field ramping-rate capabilit...
Abstract-Flux penetration in large area YBCO thin films has been studied by a magneto-optical scanni...
By implementing a unique magneto-optical system with ultrafast magnetic-field ramping-rate capabilit...
A YBa2Cu3O7- (YBCO) thin film is patterned into a hexagonal close packed lattice of disks which are ...
A YBa2Cu3O7- thin film is patterned into a hexagonal close-packed lattice of disks (2r=50 m) which a...
Honeycomb arrays (cells approximate to 50 mum in size) were patterned in a YBa2Cu3Oy thin film in or...
A magneto-optical apparatus has been designed to investigate flux and current distributions in vario...
Recent studies on the magneto-optical (MO) imaging of the magnetic flux and current distributions in...
The dynamics of magnetic flux distributions across a YBa2Cu3O7−δ strip carrying transport current is...
Magneto-optical imaging was used to visualize the inhomogeneous penetration of mag-netic flux into p...
An efficient non-destructive magneto-optic imaging system was developed that employs special iron-g...
We present the results of experiments on visualization of magnetic flux distribution and its dynamic...
We have investigated the magnetic field distribution in epitaxial YBa2Cu3O7-x films on square SrTiO3...
Using magneto-optical visualization, individual 2 μm diameter antidots (circular holes) in YB
In the past few years magneto-optical flux imaging (MOI) has come to take an increasing role in the...
By implementing a unique magneto-optical system with ultrafast magnetic-field ramping-rate capabilit...
Abstract-Flux penetration in large area YBCO thin films has been studied by a magneto-optical scanni...
By implementing a unique magneto-optical system with ultrafast magnetic-field ramping-rate capabilit...