The ILC Reference Design Report was completed early in February 2007. The Magnet Systems Group was formed to translate magnetic field requirements into magnet designs and cost estimates for the Reference Design. As presently configured, the ILC will have more than 13,000 magnetic elements of which more than 2300 will be based on superconducting technology. This paper will describe the major superconducting magnet needs for the ILC as presently determined by the Area Systems Groups, responsible for beam line design, working with the Magnet Systems Group. The superconducting magnet components include Main Linac quadrupoles, Positron Source undulators, Damping Ring wigglers, a complex array of Final Focus superconducting elements in the Beam D...
The development of superconductors for magnet applications has received a strong boost from the High...
A comparison of possible undulator designs for the International Linear Collider positron source has...
The ILC positron source relies upon a ~200 m long superconducting helical undulator in order to gene...
The ILC Reference Design Report was completed early in February 2007. The Magnet Systems Group was f...
The ILC Beam Delivery System (BDS) uses a variety of superconducting magnets to maximize luminosity ...
The Large Hadron Collider (LHC) presently under construction at CERN relies on superconducting techn...
A Global Design Effort (GDE) began in 2005 to study a TeV scale electron-positron linear accelerator...
In order to achieve the high luminosity required at the proposed International Linear Collider (ILC)...
The High Luminosity LHC (HL-LHC) project is aimed at studying and implementing the necessary changes...
In order to achieve the high luminosity required at the proposed International Linear Collider (ILC)...
CERN and INFN, Italy, have signed an agreement for R&D activities relating to high-luminosity LHC su...
The Large Hadron Collider (LHC) project is the largest plant based on superconductivity and cryogeni...
The International Linear Collider (ILC) is a 200-500 GeV center-of-mass high-luminosity linear elect...
The Large Hadron Collider (LHC) is a high energy, high luminosity particle accelerator under constru...
CERN and INFN, Italy, have signed an agreement for RD activities relating to high-luminosity LHC sup...
The development of superconductors for magnet applications has received a strong boost from the High...
A comparison of possible undulator designs for the International Linear Collider positron source has...
The ILC positron source relies upon a ~200 m long superconducting helical undulator in order to gene...
The ILC Reference Design Report was completed early in February 2007. The Magnet Systems Group was f...
The ILC Beam Delivery System (BDS) uses a variety of superconducting magnets to maximize luminosity ...
The Large Hadron Collider (LHC) presently under construction at CERN relies on superconducting techn...
A Global Design Effort (GDE) began in 2005 to study a TeV scale electron-positron linear accelerator...
In order to achieve the high luminosity required at the proposed International Linear Collider (ILC)...
The High Luminosity LHC (HL-LHC) project is aimed at studying and implementing the necessary changes...
In order to achieve the high luminosity required at the proposed International Linear Collider (ILC)...
CERN and INFN, Italy, have signed an agreement for R&D activities relating to high-luminosity LHC su...
The Large Hadron Collider (LHC) project is the largest plant based on superconductivity and cryogeni...
The International Linear Collider (ILC) is a 200-500 GeV center-of-mass high-luminosity linear elect...
The Large Hadron Collider (LHC) is a high energy, high luminosity particle accelerator under constru...
CERN and INFN, Italy, have signed an agreement for RD activities relating to high-luminosity LHC sup...
The development of superconductors for magnet applications has received a strong boost from the High...
A comparison of possible undulator designs for the International Linear Collider positron source has...
The ILC positron source relies upon a ~200 m long superconducting helical undulator in order to gene...