Physics-driven lumped-element modelling for impedance simulations of superconducting accelerator magnets
M. Janitschke(European Organization for Nuclear Research), Ursula van Rienen(University of Rostock), E. Ravaioli(University of Twente), Arjan Verweij(European Organization for Nuclear Research), Mateusz Bednarek(European Organization for Nuclear Research), Gerard Willering(European Organization for Nuclear Research)
Cited by 7
Related Papers
Characterization of a high-temperature superconducting conductor on round core cables in magnetic fields up to 20 T
|Superconductor Science and Technology|2013|170
The High Luminosity LHC interaction region magnets towards series production
|Superconductor Science and Technology|2021|91
Status of the 16 T Dipole Development Program for a Future Hadron Collider
|IEEE Transactions on Applied Superconductivity|2017|71
Effect of variations in terminal contact resistances on the current distribution in high-temperature superconducting cables
|Superconductor Science and Technology|2015|57
PERLE. Powerful energy recovery linac for experiments. Conceptual design report
|Journal of Physics G Nuclear and Particle Physics|2017|53