Magneto-optical imaging (MOI) is a useful and highly versatile technique for the investigation of magnetic and current-carrying properties of superconductors. High-speed imaging is particularly important as superconductors often exhibit interesting magnetic behaviour over short timescales, such as the behaviour of individual flux vortices during magnetic flux penetration. The following method was developed to facilitate the high-speed acquisition of magneto-optical images of superconducting samples, and the determination of magnetic field and current flow data from these images. This method may be the first to allow current mapping of short timescale magnetic events in superconductors. Magneto-optical images were acquired using a high-speed...
The diamagnetic field created by supercurrent will be saturated after superconducting bulk sample is...
An efficient non-destructive magneto-optic imaging system was developed that employs special iron-g...
A new apparatus for magneto-optical investigations of high temperature superconducting (HTS) films a...
Magneto-optical imaging is a powerful tool for nondestructive quality control and scientific researc...
The magneto-optical imaging (MOI) technique is widely employed to characterize the magnetic properti...
The work presented in this thesis deals with the magneto-optical imaging (MOI) technique, which was ...
Magneto-Optical Imaging (MOI) technique is a powerful tool for studying the magnetic flux patterns i...
Spatial distributions of magnetic field and of current density in superconductors are obtained, in r...
Recent studies on the magneto-optical (MO) imaging of the magnetic flux and current distributions in...
Direct imaging of the paths of transport currents in superconductors creates many new possibilities ...
A contactless method is used to measure the local current density in superconductors at fields up to...
In the past few years magneto-optical flux imaging (MOI) has come to take an increasing role in the...
AbstractThe columnar growth of superconducting films is a new approach that provides high density of...
Magnetic microscopy is the process of creating accurate images of magnetic flux, to map its variatio...
A novel mathematical approach has been developed to complete the inversion of the Biot-Savart law in...
The diamagnetic field created by supercurrent will be saturated after superconducting bulk sample is...
An efficient non-destructive magneto-optic imaging system was developed that employs special iron-g...
A new apparatus for magneto-optical investigations of high temperature superconducting (HTS) films a...
Magneto-optical imaging is a powerful tool for nondestructive quality control and scientific researc...
The magneto-optical imaging (MOI) technique is widely employed to characterize the magnetic properti...
The work presented in this thesis deals with the magneto-optical imaging (MOI) technique, which was ...
Magneto-Optical Imaging (MOI) technique is a powerful tool for studying the magnetic flux patterns i...
Spatial distributions of magnetic field and of current density in superconductors are obtained, in r...
Recent studies on the magneto-optical (MO) imaging of the magnetic flux and current distributions in...
Direct imaging of the paths of transport currents in superconductors creates many new possibilities ...
A contactless method is used to measure the local current density in superconductors at fields up to...
In the past few years magneto-optical flux imaging (MOI) has come to take an increasing role in the...
AbstractThe columnar growth of superconducting films is a new approach that provides high density of...
Magnetic microscopy is the process of creating accurate images of magnetic flux, to map its variatio...
A novel mathematical approach has been developed to complete the inversion of the Biot-Savart law in...
The diamagnetic field created by supercurrent will be saturated after superconducting bulk sample is...
An efficient non-destructive magneto-optic imaging system was developed that employs special iron-g...
A new apparatus for magneto-optical investigations of high temperature superconducting (HTS) films a...