We report on remarkably high in-field performance at 4.2 K achieved in >4 μm thick rare earth barium copper oxide (REBCO) samples with Zr addition. Two different samples have been measured independently at Lawrence Berkeley National Laboratory and the National High Magnetic Field Laboratory, achieving critical current densities (J c) of 12.21 MA cm-2 and 12.32 MA cm-2 at 4.2 K, 14 T (), respectively, which corresponds to equivalent critical current (I c) values of 2247 and 2119 A/4 mm. These I c values are about two times higher than the best reported performance of REBCO tapes to date and more than five times higher than the commercial HTS tapes reported in a recent study. The measured J c values, with a pinning force of ∼1.7 T N m-3 ar...
High-temperature superconducting (HTS) conductor is a feasible candidate to make magnets for the nex...
The possibility of rescaling (or calibrating) of the magnetization results to predict the transport ...
We present a broad study by multiple techniques of the critical current and critical current density...
We report on remarkably high in-field performance at 4.2 K achieved in >4 μm thick rare earth bar...
RE-Ba-Cu-O (REBCO, RE = rare earth) coated conductors are approaching the large-scale electric power...
High Temperature Superconducting (HTS) Coated Conductors (CCs) based on epitaxial REBa2Cu3O7-δ (R...
High Temperature Superconducting (HTS) Coated Conductors (CCs) based on epitaxial REBa2Cu3O7-δ (REBC...
Applications of REBCO coated conductors are now being developed for a very wide range of temperature...
Scaling relations describing the electromagnetic behaviour of coated conductors (CCs) greatly simpli...
High temperature superconducting (HTS) tapes are being developed for a wide range of energy and magn...
ReBCO Coated Conductors are ceramic flat tape High Temperature Superconductors (HTS) capable of carry...
One of the important critical needs that came out of the DOE’s coated conductor workshop was to deve...
The use of REBCO coated conductors (CCs) is envisaged for many applications, extending from power ca...
No-insulation and partial-insulation are novel approaches for compact, high field rare-earth-Ba2Cu3O...
AbstractConsiderable progress has been made with the development of YBa2Cu3O7-δ and related rare-ear...
High-temperature superconducting (HTS) conductor is a feasible candidate to make magnets for the nex...
The possibility of rescaling (or calibrating) of the magnetization results to predict the transport ...
We present a broad study by multiple techniques of the critical current and critical current density...
We report on remarkably high in-field performance at 4.2 K achieved in >4 μm thick rare earth bar...
RE-Ba-Cu-O (REBCO, RE = rare earth) coated conductors are approaching the large-scale electric power...
High Temperature Superconducting (HTS) Coated Conductors (CCs) based on epitaxial REBa2Cu3O7-δ (R...
High Temperature Superconducting (HTS) Coated Conductors (CCs) based on epitaxial REBa2Cu3O7-δ (REBC...
Applications of REBCO coated conductors are now being developed for a very wide range of temperature...
Scaling relations describing the electromagnetic behaviour of coated conductors (CCs) greatly simpli...
High temperature superconducting (HTS) tapes are being developed for a wide range of energy and magn...
ReBCO Coated Conductors are ceramic flat tape High Temperature Superconductors (HTS) capable of carry...
One of the important critical needs that came out of the DOE’s coated conductor workshop was to deve...
The use of REBCO coated conductors (CCs) is envisaged for many applications, extending from power ca...
No-insulation and partial-insulation are novel approaches for compact, high field rare-earth-Ba2Cu3O...
AbstractConsiderable progress has been made with the development of YBa2Cu3O7-δ and related rare-ear...
High-temperature superconducting (HTS) conductor is a feasible candidate to make magnets for the nex...
The possibility of rescaling (or calibrating) of the magnetization results to predict the transport ...
We present a broad study by multiple techniques of the critical current and critical current density...