Part of the Future Circular Collider (FCC-hh) study is dedicated to the development of the 16 Tesla $rm Nb_3Sn$ superconducting dipole magnets. The design of the magnets was enabled by a cooperative effort of national research institutes, universities, and CERN. These actors tackled the problem from different sides, namely, the electromagnetic design, the mechanical design, the design of the quench protection systems, and the circuit design. The article deals with the design of the quench protection systems and provides solid motivations for the selection of the coupling-loss-induced quench (CLIQ) device as the baseline protection system for the FCC-hh main dipole magnets. The article shows that the design domains mentioned above are tightl...
The EuroCirCol collaboration is designing a 16 T Nb_{3}Sn dipole that can be used as the main bendin...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
International audienceThe EuroCirCol collaboration is designing a 16 T Nb3Sn dipole that can be used...
International audiencePart of the Future Circular Collider (FCC-hh) study is dedicated to the develo...
Part of the Future Circular Collider (FCC-hh) study is dedicated to the development of the 16 Tesla ...
International audiencePart of the Future Circular Collider (FCC-hh) study is dedicated to the develo...
Three different 16 T dipole magnet options for the Future Circular Collider (FCC) have been designed...
Three different 16 T dipole magnet options for the Future Circular Collider (FCC) have been designed...
The Future Circular Collider (FCC-hh) project is a conceptual study whose goal is to design the succ...
The Future Circular Collider (FCC-hh) project is a conceptual study whose goal is to design the succ...
Abstract: Protection against the effects of a quench is a crucial challenge for 16-T-class supercond...
Protection against the effects of a quench is a crucial challenge for 16-T-class superconducting dip...
From 2016, Paul Scherrer Institut (PSI) started an activity related to developing design, constructi...
Within the future circular collider study, a 100-km long circular hadron collider is being designed ...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
The EuroCirCol collaboration is designing a 16 T Nb_{3}Sn dipole that can be used as the main bendin...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
International audienceThe EuroCirCol collaboration is designing a 16 T Nb3Sn dipole that can be used...
International audiencePart of the Future Circular Collider (FCC-hh) study is dedicated to the develo...
Part of the Future Circular Collider (FCC-hh) study is dedicated to the development of the 16 Tesla ...
International audiencePart of the Future Circular Collider (FCC-hh) study is dedicated to the develo...
Three different 16 T dipole magnet options for the Future Circular Collider (FCC) have been designed...
Three different 16 T dipole magnet options for the Future Circular Collider (FCC) have been designed...
The Future Circular Collider (FCC-hh) project is a conceptual study whose goal is to design the succ...
The Future Circular Collider (FCC-hh) project is a conceptual study whose goal is to design the succ...
Abstract: Protection against the effects of a quench is a crucial challenge for 16-T-class supercond...
Protection against the effects of a quench is a crucial challenge for 16-T-class superconducting dip...
From 2016, Paul Scherrer Institut (PSI) started an activity related to developing design, constructi...
Within the future circular collider study, a 100-km long circular hadron collider is being designed ...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
The EuroCirCol collaboration is designing a 16 T Nb_{3}Sn dipole that can be used as the main bendin...
The coupling-loss-induced quench (CLIQ) is an innovative system for the protection of superconductin...
International audienceThe EuroCirCol collaboration is designing a 16 T Nb3Sn dipole that can be used...