We present a comparison between the electromagnetic model of the main LHC magnets and the magnetic measurements carried out during production. The goal of this study is to test the validity range of the model and to uncover discrepancies between models and reality. We de-compose the field computation into several parts: geometry (coils, collars, and yoke), persistent currents in the superconducting cables, and saturation of the iron yoke. For each component we give the agreement between model and measurements. This gives an indication about the precision one can expect to obtain from a simulation code - this information is particularly relevant for future upgrades of the LH
The Large Hadron Collider (LHC) will use some 7600 superconducting corrector magnets. The magnetic f...
The data relative to the magnetic measurements at room temperature of the MBP2N1 prototype of the LH...
We describe the systems for AC loss and magnetic field measurements developed for the LHC supercondu...
We present a comparison between the electromagnetic model of the main LHC magnets and the magnetic m...
The relation between field and current in each family of the Large Hadron Collider magnets is modell...
The relation between field and current in each family of the Large Hadron Collider magnets is modell...
Extensive power tests of the LHC dipole magnets required the development of new techniques to study ...
Field measuring systems operating at room temperature have been installed on each magnet manufacture...
CERN is currently assembling the LHC (Large Hadron Collider) that will accelerate and bring in colli...
The compensation of the field changes during the beam injection and acceleration in the LHC requires...
CERN is currently assembling the LHC (Large Hadron Collider) that will accelerate and bring in colli...
During the 2009 LHC injection tests, the polarities and effects of specific quadrupole and higher-or...
The field strength and homogeneity of all the LHC superconducting magnets were measured as a part of...
The LHCb warm magnet has been designed to provide an integrated field of 4 Tm for tracks coming from...
We report the main results of the magnetic field measurements performed on the full-size LHC superco...
The Large Hadron Collider (LHC) will use some 7600 superconducting corrector magnets. The magnetic f...
The data relative to the magnetic measurements at room temperature of the MBP2N1 prototype of the LH...
We describe the systems for AC loss and magnetic field measurements developed for the LHC supercondu...
We present a comparison between the electromagnetic model of the main LHC magnets and the magnetic m...
The relation between field and current in each family of the Large Hadron Collider magnets is modell...
The relation between field and current in each family of the Large Hadron Collider magnets is modell...
Extensive power tests of the LHC dipole magnets required the development of new techniques to study ...
Field measuring systems operating at room temperature have been installed on each magnet manufacture...
CERN is currently assembling the LHC (Large Hadron Collider) that will accelerate and bring in colli...
The compensation of the field changes during the beam injection and acceleration in the LHC requires...
CERN is currently assembling the LHC (Large Hadron Collider) that will accelerate and bring in colli...
During the 2009 LHC injection tests, the polarities and effects of specific quadrupole and higher-or...
The field strength and homogeneity of all the LHC superconducting magnets were measured as a part of...
The LHCb warm magnet has been designed to provide an integrated field of 4 Tm for tracks coming from...
We report the main results of the magnetic field measurements performed on the full-size LHC superco...
The Large Hadron Collider (LHC) will use some 7600 superconducting corrector magnets. The magnetic f...
The data relative to the magnetic measurements at room temperature of the MBP2N1 prototype of the LH...
We describe the systems for AC loss and magnetic field measurements developed for the LHC supercondu...