In the framework of future LHC upgrades using Nb(3)Sn magnets, supported in part by the US LHC Accelerator Research Program (LARP) and the European EuCARD program, CERN is intensifying its research on Nb(3)Sn Rutherford cables. In the FRESCA cable test facility at CERN, two new Nb(3)Sn cable samples were investigated concerning their quench and critical current as well as stability performance. The two samples are based on RRP type strands with comparable layout. They have 27 strands with 0.7 mm diameter while the strands have 54 or 108 superconducting sub-elements. The cables are 10 mm wide and have a transposition pitch of about 75 mm. The cables are used in magnets built for LARP. Their performance is measured as a function of magnetic f...
In the frame of the planned luminosity upgrade of the Large Hadron Collider, new quadrupole and dipo...
In large scale superconducting applications, like bending magnets in particle colliders, thermal sta...
The quadrupole and dipole magnets for the LHC High Luminosity (HL-LHC) upgrade will be based on Nb$_...
For the LHC upgrade, CERN has launched a large program to develop next generation accelerator magnet...
The so-called CERN-LHC DS upgrade relies on the use of 11 T dipole magnets. For these magnets 40 str...
In order to achieve higher magnetic fields and/or larger magnet apertures, next generation accelerat...
As part of a collaboration between FNAL and CERN, Nb{sub 3}Sn Rutherford-type cables made of differe...
Rutherford-type cables made of high critical current Nb/sub 3/Sn strands are being used in several l...
The Nb{sub 3}Sn strand chosen for the next step in the magnet R&D of the U.S. LHC Accelerator Re...
In the framework of the US LHC Accelerator Program (LARP), three US laboratories BNL, FNAL and LBNL ...
The Nb{sub 3}Sn strand chosen for the next step in the magnet R&D of the U.S. LHC Accelerator Re...
The first step in the magnet R&D of the U.S. LHC Accelerator Research Program (LARP) is fabricat...
Fermilab and CERN started the development of 11 T 11-m long Nb{sub 3}Sn dipoles to replace few regul...
In the framework of the US LHC Accelerator Program (LARP), three US laboratories BNL, FNAL and LBNL ...
In the framework of the development of an experimental 10 T Nb3Sn dipole coil for the LHC at CERN th...
In the frame of the planned luminosity upgrade of the Large Hadron Collider, new quadrupole and dipo...
In large scale superconducting applications, like bending magnets in particle colliders, thermal sta...
The quadrupole and dipole magnets for the LHC High Luminosity (HL-LHC) upgrade will be based on Nb$_...
For the LHC upgrade, CERN has launched a large program to develop next generation accelerator magnet...
The so-called CERN-LHC DS upgrade relies on the use of 11 T dipole magnets. For these magnets 40 str...
In order to achieve higher magnetic fields and/or larger magnet apertures, next generation accelerat...
As part of a collaboration between FNAL and CERN, Nb{sub 3}Sn Rutherford-type cables made of differe...
Rutherford-type cables made of high critical current Nb/sub 3/Sn strands are being used in several l...
The Nb{sub 3}Sn strand chosen for the next step in the magnet R&D of the U.S. LHC Accelerator Re...
In the framework of the US LHC Accelerator Program (LARP), three US laboratories BNL, FNAL and LBNL ...
The Nb{sub 3}Sn strand chosen for the next step in the magnet R&D of the U.S. LHC Accelerator Re...
The first step in the magnet R&D of the U.S. LHC Accelerator Research Program (LARP) is fabricat...
Fermilab and CERN started the development of 11 T 11-m long Nb{sub 3}Sn dipoles to replace few regul...
In the framework of the US LHC Accelerator Program (LARP), three US laboratories BNL, FNAL and LBNL ...
In the framework of the development of an experimental 10 T Nb3Sn dipole coil for the LHC at CERN th...
In the frame of the planned luminosity upgrade of the Large Hadron Collider, new quadrupole and dipo...
In large scale superconducting applications, like bending magnets in particle colliders, thermal sta...
The quadrupole and dipole magnets for the LHC High Luminosity (HL-LHC) upgrade will be based on Nb$_...