For the LHC upgrade, CERN has launched a large program to develop next generation accelerator magnets based on high-Jc Nb$_{3}$Sn Rutherford cables. These magnets are characterized by a magnetic field and/or an aperture significantly larger than that of current Nb-Ti LHC magnets. The increased field/aperture will require coil pre-stresses much larger than 100 MPa. Since Nb$_{3}$Sn cables are extremely sensitive to strain, critical current measurements under traverse compression are essential to estimate the transport current properties of the conductor within the magnet. To this purpose CERN has developed a sample holder (to be used in the FRESCA test station) that allows testing Rutherford cables under a transverse force of up to 2 MN/m. T...
In the framework of the Future Circular Collider design study for a 100 TeV circular collider, 16 T ...
For high energy physics applications superconducting cables are subjected to large stresses and high...
Nb3Sn Rutherford cables are used in CERN’s superconducting 11 T dipole and MQXF quadrupole magnets, ...
In order to achieve higher magnetic fields and/or larger magnet apertures, next generation accelerat...
In the framework of future LHC upgrades using Nb(3)Sn magnets, supported in part by the US LHC Accel...
In the framework of the development of an experimental 10 T Nb3Sn dipole coil for the LHC at CERN th...
The so-called CERN-LHC DS upgrade relies on the use of 11 T dipole magnets. For these magnets 40 str...
As part of a collaboration between FNAL and CERN, Nb{sub 3}Sn Rutherford-type cables made of differe...
In the frame of the High-Luminosity Large Hadron Collider construction and Future Circular Collider ...
The measured critical current reduction in Nb3Sn Rutherford cables under magnet-relevant transverse ...
The measured critical current reduction in Nb3Sn Rutherford cables under magnet-relevant transverse ...
Results obtained on 18-strand 10-mm-wide cable sample based on a 1-mm-diameter powder-in-tube (PIT) ...
Rutherford-type cables made of high critical current Nb/sub 3/Sn strands are being used in several l...
The Large Hadron Collider (LHC) is a two-ring, superconducting synchrotron accelerator and collider ...
Abstract. Fermilab is developing high field superconducting magnets for future accelerators based on...
In the framework of the Future Circular Collider design study for a 100 TeV circular collider, 16 T ...
For high energy physics applications superconducting cables are subjected to large stresses and high...
Nb3Sn Rutherford cables are used in CERN’s superconducting 11 T dipole and MQXF quadrupole magnets, ...
In order to achieve higher magnetic fields and/or larger magnet apertures, next generation accelerat...
In the framework of future LHC upgrades using Nb(3)Sn magnets, supported in part by the US LHC Accel...
In the framework of the development of an experimental 10 T Nb3Sn dipole coil for the LHC at CERN th...
The so-called CERN-LHC DS upgrade relies on the use of 11 T dipole magnets. For these magnets 40 str...
As part of a collaboration between FNAL and CERN, Nb{sub 3}Sn Rutherford-type cables made of differe...
In the frame of the High-Luminosity Large Hadron Collider construction and Future Circular Collider ...
The measured critical current reduction in Nb3Sn Rutherford cables under magnet-relevant transverse ...
The measured critical current reduction in Nb3Sn Rutherford cables under magnet-relevant transverse ...
Results obtained on 18-strand 10-mm-wide cable sample based on a 1-mm-diameter powder-in-tube (PIT) ...
Rutherford-type cables made of high critical current Nb/sub 3/Sn strands are being used in several l...
The Large Hadron Collider (LHC) is a two-ring, superconducting synchrotron accelerator and collider ...
Abstract. Fermilab is developing high field superconducting magnets for future accelerators based on...
In the framework of the Future Circular Collider design study for a 100 TeV circular collider, 16 T ...
For high energy physics applications superconducting cables are subjected to large stresses and high...
Nb3Sn Rutherford cables are used in CERN’s superconducting 11 T dipole and MQXF quadrupole magnets, ...