Experience with AC superconducting magnets for accelerators has still to be gained. So far, few experiments were carried out typically in pulsed mode (one or few ramps). The design and manufacture of an AC dipole providing 3 T in the aperture ramped at 3 T/s ramp shall take into account many aspects resulting in a balanced compromise between the different contributions of magnet losses, temperature/field margin, lifetime under the cyclic operation in a radioactive environment. This note recalls some aspects to be considered for designing and manufacturing such a dipole, pointing out the still open issues which need R&D
We describe the systems for AC loss and magnetic field measurements developed for the LHC supercondu...
Fast Cycled Superconducting Magnets (FCM's) are an option of interest for the long-term consolidatio...
In order to achieve higher magnetic fields and/or larger magnet apertures, next generation accelerat...
One of the major achievements of the magnet R&D program for the Superconducting Super Collider (SSC)...
The new heavy ion synchrotron facility proposed by GSI will have two superconducting magnet rings in...
Fermilab and CERN started the development of 11 T 11-m long Nb{sub 3}Sn dipoles to replace few regul...
Following successful experience at the BNL AGS, FNAL Tevatron, and CERN SPS, an AC Dipole will be ad...
An 87.8 mm bore single aperture 10 T Nb3Sn model dipole magnet is under development as a next step i...
The INFN (Istituto Nazionale di Fisica Nucleare, Italy) has launched in 2006 the DISCORAP (DIpoli Su...
Considerable attention has been paid in the last years to the development of fast-cycled superconduc...
Considerable attention has been paid in the last years to the development of fast-cycled superconduc...
The stability of superconducting magnets has a high priority for particle accelerators, since the op...
Abstract- Last year a record central field of 11 T at first excitation at 4.4 K has been achieved wi...
Fermilab is developing 11 T superconducting dipole magnets for future accelerators based on Nb{sub 3...
AbstractFast Cycled Superconducting Magnets (FCM's) are an option of interest for the long-term cons...
We describe the systems for AC loss and magnetic field measurements developed for the LHC supercondu...
Fast Cycled Superconducting Magnets (FCM's) are an option of interest for the long-term consolidatio...
In order to achieve higher magnetic fields and/or larger magnet apertures, next generation accelerat...
One of the major achievements of the magnet R&D program for the Superconducting Super Collider (SSC)...
The new heavy ion synchrotron facility proposed by GSI will have two superconducting magnet rings in...
Fermilab and CERN started the development of 11 T 11-m long Nb{sub 3}Sn dipoles to replace few regul...
Following successful experience at the BNL AGS, FNAL Tevatron, and CERN SPS, an AC Dipole will be ad...
An 87.8 mm bore single aperture 10 T Nb3Sn model dipole magnet is under development as a next step i...
The INFN (Istituto Nazionale di Fisica Nucleare, Italy) has launched in 2006 the DISCORAP (DIpoli Su...
Considerable attention has been paid in the last years to the development of fast-cycled superconduc...
Considerable attention has been paid in the last years to the development of fast-cycled superconduc...
The stability of superconducting magnets has a high priority for particle accelerators, since the op...
Abstract- Last year a record central field of 11 T at first excitation at 4.4 K has been achieved wi...
Fermilab is developing 11 T superconducting dipole magnets for future accelerators based on Nb{sub 3...
AbstractFast Cycled Superconducting Magnets (FCM's) are an option of interest for the long-term cons...
We describe the systems for AC loss and magnetic field measurements developed for the LHC supercondu...
Fast Cycled Superconducting Magnets (FCM's) are an option of interest for the long-term consolidatio...
In order to achieve higher magnetic fields and/or larger magnet apertures, next generation accelerat...