The windings of high-field accelerator magnets are usually made of Rutherford-type superconducting cables. The magnetic field distribution along the axis of such magnets exhibits a pronounced periodic modulation with a wavelength equal to the twist pitch length of the cable used in the winding. Such an effect, resulting from quasi-persistent currents, was investigated with a Hall probe array inserted inside the aperture of 1-metre long LHC superconducting dipole models. The amplitude and the time dependence of this periodic field oscillation have been studied as a function of the transport current history. The impact on the magnet stability of the non-uniform current redistribution producing such a field modulation is discussed.
The decay of the allowed multipoles in the Large Hadron Collider (LHC) dipoles is expected to pertur...
Extensive power tests of the LHC dipole magnets required the development of new techniques to study ...
A model for the simulation of current distribution in superconducting Rutherford cables is described...
The magnetic field in superconducting accelerator magnets has a fine structure with longitudinal per...
Time-varying magnetic field quality of superconducting accelerator magnets is a important issue of a...
Abstract-The quality of the magnetic field in superconduc-ting accelerator magnets is associated wit...
The quality of the magnetic field in superconducting accelerator magnets is associated with the prop...
One of the main issues for the operation of the LHC accelerator at CERN is the field errors generate...
The production of more than 60% of superconducting cables for the main dipoles of the Large Hadron C...
An analysis of eddy currents induced in flat Rutherford-type cables by external time dependent magne...
Superconducting quadrupole magnets for the LHC-IR have been developed and tested by KEK in collabora...
Current distribution among the wires of multi-strand superconducting cables is an important item for...
The decay of the allowed multipoles in the Large Hadron Collider (LHC) dipoles is expected to pertur...
Shielding-current-induced fields (SCIFs) in magnets wound with coated conductors deteriorate the fie...
The compensation of the field changes during the beam injection and acceleration in the LHC requires...
The decay of the allowed multipoles in the Large Hadron Collider (LHC) dipoles is expected to pertur...
Extensive power tests of the LHC dipole magnets required the development of new techniques to study ...
A model for the simulation of current distribution in superconducting Rutherford cables is described...
The magnetic field in superconducting accelerator magnets has a fine structure with longitudinal per...
Time-varying magnetic field quality of superconducting accelerator magnets is a important issue of a...
Abstract-The quality of the magnetic field in superconduc-ting accelerator magnets is associated wit...
The quality of the magnetic field in superconducting accelerator magnets is associated with the prop...
One of the main issues for the operation of the LHC accelerator at CERN is the field errors generate...
The production of more than 60% of superconducting cables for the main dipoles of the Large Hadron C...
An analysis of eddy currents induced in flat Rutherford-type cables by external time dependent magne...
Superconducting quadrupole magnets for the LHC-IR have been developed and tested by KEK in collabora...
Current distribution among the wires of multi-strand superconducting cables is an important item for...
The decay of the allowed multipoles in the Large Hadron Collider (LHC) dipoles is expected to pertur...
Shielding-current-induced fields (SCIFs) in magnets wound with coated conductors deteriorate the fie...
The compensation of the field changes during the beam injection and acceleration in the LHC requires...
The decay of the allowed multipoles in the Large Hadron Collider (LHC) dipoles is expected to pertur...
Extensive power tests of the LHC dipole magnets required the development of new techniques to study ...
A model for the simulation of current distribution in superconducting Rutherford cables is described...