This chapter reports on the University of Twente (UT)–European Organization for Nuclear Research (CERN) cos-theta LHC-type Nb$_{3}$Sn dipole magnet program. In this program an experimental 1 m long two-layer cos-theta dipole magnet was developed using Rutherford cables made with powder-in-tube Nb$_{3}$Sn composite wires. The magnet reached a magnetic field of 11.3 T in a bore of 50 mm
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...
This chapter reports on the European Organization for Nuclear Research (CERN)–ELIN Nb$_{3}$Sn dipole...
This paper describes the double aperture dipole magnets developed for a VLHC based on Nb{sub 3}Sn su...
A 10 T, 2-layer cos( theta )-dipole model magnet with an 88 mm clear bore utilizing an advanced powd...
As part of the High Field Magnet program at Fermilab three cos({theta}) magnets--two mirror dipole m...
A series of 1-m long Nb3Sn dipole magnets have been built at Fermilab in an attempt to refine the wi...
An experimental 1-m long twill aperture dipole magnet developed using a high-current Nb3Sn conductor...
Fermilab is working on the development of Nb{sub 3}Sn accelerator magnets using shell-type dipole co...
Fermilab and CERN started the development of 11 T 11-m long Nb{sub 3}Sn dipoles to replace few regul...
A 10 T, 2-layer cos(&thetas;)-dipole model magnet with an 88 mm clear bore utilizing an advanced pow...
FNAL and CERN are developing a 5.5 m long twinaperture Nb3 Sn dipole prototype suitable for installa...
As part of the magnet development program for the LHC an experimental 1 m long 11.5 T single apertur...
Fermilab is developing high field superconducting dipole magnets based on Nb/sub 3/Sn for a post-LHC...
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...
This chapter reports on the European Organization for Nuclear Research (CERN)–ELIN Nb$_{3}$Sn dipole...
This paper describes the double aperture dipole magnets developed for a VLHC based on Nb{sub 3}Sn su...
A 10 T, 2-layer cos( theta )-dipole model magnet with an 88 mm clear bore utilizing an advanced powd...
As part of the High Field Magnet program at Fermilab three cos({theta}) magnets--two mirror dipole m...
A series of 1-m long Nb3Sn dipole magnets have been built at Fermilab in an attempt to refine the wi...
An experimental 1-m long twill aperture dipole magnet developed using a high-current Nb3Sn conductor...
Fermilab is working on the development of Nb{sub 3}Sn accelerator magnets using shell-type dipole co...
Fermilab and CERN started the development of 11 T 11-m long Nb{sub 3}Sn dipoles to replace few regul...
A 10 T, 2-layer cos(&thetas;)-dipole model magnet with an 88 mm clear bore utilizing an advanced pow...
FNAL and CERN are developing a 5.5 m long twinaperture Nb3 Sn dipole prototype suitable for installa...
As part of the magnet development program for the LHC an experimental 1 m long 11.5 T single apertur...
Fermilab is developing high field superconducting dipole magnets based on Nb/sub 3/Sn for a post-LHC...
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...
A future circular collider (FCC) with a center-of-mass energy of 100 TeV and a circumference of arou...