Funder: King Abdulaziz City for Science and Technology; doi: http://dx.doi.org/10.13039/501100004919Abstract: Bulk high temperature superconductors based on the rare-earth copper oxides can be used effectively as trapped field magnets capable of generating large magnetic fields. The top-seeded infiltration growth (TSIG) processing technique can provide a more homogeneous microstructure and therefore more uniform superconducting properties than samples grown using conventional melt growth processes. In the present investigation, the properties of bulk, single grain superconductors processed by TSIG and magnetised by the pulsed-field magnetisation technique using a copper-wound solenoid have been studied. A trapped field of ∼3 T has been achi...
Large, single-grain bulk high-temperature superconducting materials can trap high magnetic fields in...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
The magnetic flux penetration into the melt-textured Y-Ba-Cu-O high temperature superconducting bulk...
Funder: King Abdulaziz City for Science and Technology; doi: http://dx.doi.org/10.13039/501100004919...
Abstract Bulk high temperature superconductors based on the rare-earth copper oxides ...
Bulk high temperature superconductors based on the rare-earth copper oxides can be used effectively ...
The two-step top seeded infiltration and growth (TSIG) melt process has emerged as a successful and ...
The two-step Top Seeded Infiltration and Growth (TSIG) melt process has emerged as a successful and ...
Buffer-aided top seeded infiltration and growth (TSIG) with a suitable liquid phase reservoir has be...
The multi-seeding process has the potential to enlarge the sample size of (RE)BCO (where RE = rare e...
Bulk (RE)–Ba–Cu–O ((RE)BCO, where RE stands for rare-earth), single grain superconductors can trap m...
AbstractBuffer-aided top seeded infiltration and growth (TSIG) with a suitable liquid phase reservoi...
The multi-seeding process has the potential to enlarge the sample size of (RE)BCO (where RE = rare e...
Bulk (RE)-Ba-Cu-O ((RE)BCO, where RE stands for rare-earth), single grain superconductors can trap m...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
Large, single-grain bulk high-temperature superconducting materials can trap high magnetic fields in...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
The magnetic flux penetration into the melt-textured Y-Ba-Cu-O high temperature superconducting bulk...
Funder: King Abdulaziz City for Science and Technology; doi: http://dx.doi.org/10.13039/501100004919...
Abstract Bulk high temperature superconductors based on the rare-earth copper oxides ...
Bulk high temperature superconductors based on the rare-earth copper oxides can be used effectively ...
The two-step top seeded infiltration and growth (TSIG) melt process has emerged as a successful and ...
The two-step Top Seeded Infiltration and Growth (TSIG) melt process has emerged as a successful and ...
Buffer-aided top seeded infiltration and growth (TSIG) with a suitable liquid phase reservoir has be...
The multi-seeding process has the potential to enlarge the sample size of (RE)BCO (where RE = rare e...
Bulk (RE)–Ba–Cu–O ((RE)BCO, where RE stands for rare-earth), single grain superconductors can trap m...
AbstractBuffer-aided top seeded infiltration and growth (TSIG) with a suitable liquid phase reservoi...
The multi-seeding process has the potential to enlarge the sample size of (RE)BCO (where RE = rare e...
Bulk (RE)-Ba-Cu-O ((RE)BCO, where RE stands for rare-earth), single grain superconductors can trap m...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
Large, single-grain bulk high-temperature superconducting materials can trap high magnetic fields in...
The ability to generate a permanent, stable magnetic field unsupported by an electromotive force is ...
The magnetic flux penetration into the melt-textured Y-Ba-Cu-O high temperature superconducting bulk...