activity
20222024
most citedTowards 20 T Hybrid Accelerator Dipole Magnets

29 citations · 71 across the 6 of their papers we have counts for

collaborators

6 papers

physics.acc-ph2024

Bi-Filar Coil Winding for Fast Quench Protection

Steven T. Krave, Vittorio Marinozzi

As superconducting magnet technology is pushed towards higher performance, energy density and total stored energy follow exponentially. Protecting magnets becomes substantially mor…

physics.acc-ph20244 cited

Effect of CLIQ on training of HL-LHC quadrupole magnets

S. Stoynev, G. Ambrosio, K. Amm +6

The high-luminosity LHC upgrade requires stronger than LHC low-beta quadrupole magnets to reach the luminosity goals of the project. The project is well advanced and HL-LHC quadrup…

physics.acc-ph20236 cited

Status of the High Field Cable Test Facility at Fermilab

G. V. Velev, D. Arbelaez, C. Arcola +11

Fermi National Accelerator Laboratory (FNAL) and Lawrence Berkeley National Laboratory (LBNL) are building a new High Field Vertical Magnet Test Facility (HFVMTF) for testing super…

physics.acc-ph202321 cited

Conceptual design of 20 T hybrid accelerator dipole magnets

P. Ferracin, G. Ambrosio, M. Anerella +17

Hybrid magnets are currently under consideration as an economically viable option towards 20 T dipole magnets for next generation of particle accelerators. In these magnets, High T…

physics.acc-ph202311 cited

Challenges and Lessons Learned from fabrication, testing and analysis of eight MQXFA Low Beta Quadrupole magnets for HL-LHC

G. Ambrosio, K. Amm, M. Anerella +55

By the end of October 2022, the US HL-LHC Accelerator Upgrade Project (AUP) had completed fabrication of ten MQXFA magnets and tested eight of them. The MQXFA magnets are the low b…

physics.acc-ph202229 cited

Towards 20 T Hybrid Accelerator Dipole Magnets

P. Ferracin, G. Ambrosio, D. Arbelaez +13

The most effective way to achieve very high collision energies in a circular particle accelerator is to maximize the field strength of the main bending dipoles. In dipole magnets u…