This paper presents a topical review of the current state of the art in modelling the magnetization of bulk superconductors, including both (RE)BCO (where RE=rare earth or Y) and MgB2 materials. Such modelling is a powerful tool to understand the physical mechanisms of their magnetization, to assist in interpretation of experimental results, and to predict the performance of practical bulk superconductor-based devices, which is particularly important as many superconducting applications head towards the commercialization stage of their development in the coming years. In addition to the analytical and numerical techniques currently used by researchers for modelling such materials, the commonly used practical techniques to magnetize bulk sup...
Superconductors have a bright future; they are able to carry very high current densities, switch rap...
Bulk (RE)BCO materials can be used potentially as powerful permanent magnets. The magnetic field dis...
Bulk superconductors can trap high magnetic fields exceeding that of conventional permanent magnets ...
This paper presents a topical review of the current state of the art in modelling the magnetization ...
The magnetisation of bulk high temperature superconductors (HTS), such as RE-Ba-Cu-O [(RE)BCO, where...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
本文データは学会の許諾に基づき J-stage から複製したものです。The applications of REBaCuO superconducting bulks (RE: rare earth...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
This book provides readers with numerical analysis techniques to model the magnetisation of bulk sup...
The magnetic field trapping capability of a bulk superconductor is essentially determined by the cri...
The magnetic field trapping capability of a bulk superconductor is essentially determined by the cri...
Superconductors, such as YBCO bulks, have extremely high potential magnetic flux densities, comparin...
Simulation studies were conducted on the magnetization of (RE)BCO (RE-Ba-Cu-O, where RE represents a...
Simulation studies were conducted on the magnetization of (RE)BCO (RE-Ba-Cu-O, where RE represents a...
Investigating and predicting the magnetization of bulk superconducting materials and developing prac...
Superconductors have a bright future; they are able to carry very high current densities, switch rap...
Bulk (RE)BCO materials can be used potentially as powerful permanent magnets. The magnetic field dis...
Bulk superconductors can trap high magnetic fields exceeding that of conventional permanent magnets ...
This paper presents a topical review of the current state of the art in modelling the magnetization ...
The magnetisation of bulk high temperature superconductors (HTS), such as RE-Ba-Cu-O [(RE)BCO, where...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
本文データは学会の許諾に基づき J-stage から複製したものです。The applications of REBaCuO superconducting bulks (RE: rare earth...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
This book provides readers with numerical analysis techniques to model the magnetisation of bulk sup...
The magnetic field trapping capability of a bulk superconductor is essentially determined by the cri...
The magnetic field trapping capability of a bulk superconductor is essentially determined by the cri...
Superconductors, such as YBCO bulks, have extremely high potential magnetic flux densities, comparin...
Simulation studies were conducted on the magnetization of (RE)BCO (RE-Ba-Cu-O, where RE represents a...
Simulation studies were conducted on the magnetization of (RE)BCO (RE-Ba-Cu-O, where RE represents a...
Investigating and predicting the magnetization of bulk superconducting materials and developing prac...
Superconductors have a bright future; they are able to carry very high current densities, switch rap...
Bulk (RE)BCO materials can be used potentially as powerful permanent magnets. The magnetic field dis...
Bulk superconductors can trap high magnetic fields exceeding that of conventional permanent magnets ...