LHC is now delivering proton and heavy ion collisions at the highest energy. Upgrading the LHC beyond its design performance is a long term program that started during the LHC construction, with some fundamental R&D programs. The upgrade program is based on a vigorous superconductor and magnet R&D, aimed at increasing the field in accelerator magnets from 8 T to 12 T for the luminosity upgrade, with the scope of increasing the collider luminosity by a factor 5 to 10 from 2022. The upgrade program might continue with the LHC energy upgrade, which would require magnets producing field in the range of 16-20 T. The results obtained so far and the future challenges are discussed together with the possible plan to reach the goals
The 2014 Particle Physics Project Prioritization Panel (P5) Report identified a critical need for tr...
The upcoming Luminosity upgrade of the LHC (HL-LHC) will rely on the use of Accelerator Quality Nb$_...
With the LHC, magnets of 10 T peak flux density Nb-Ti technology were developed and this technology ...
The Large Hadron Collider is working at about half its design value, limited by the defective splice...
In this section we present the magnet technology for the High Luminosity LHC. After a short review o...
The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since openi...
The primary goal of CERN and the Large Hadron Collider (LHC) community is to ensure that LHC is oper...
High energy hadron colliders have been instrumental to discoveries in particle physics at the energy...
The LHC will run to produce physics at the energy frontier of 13-14 TeV c.o.m. for protons for the n...
The maximum magnetic field available to guide and focus the proton beams will be the most important ...
I report the results of a CERN task force set up to investigate a possible staged upgrade of the LHC...
AbstractHigh energy hadron colliders have been instrumental to discoveries in particle physics at th...
High-energy colliders complementing and expanding the physics reach of LHC are presently under study...
The Large Hadron Collider (LHC) will provide particle physics with a tool to access the energy front...
Abstract: The superconducting magnet test facility at CERN has hosted the series test of the majorit...
The 2014 Particle Physics Project Prioritization Panel (P5) Report identified a critical need for tr...
The upcoming Luminosity upgrade of the LHC (HL-LHC) will rely on the use of Accelerator Quality Nb$_...
With the LHC, magnets of 10 T peak flux density Nb-Ti technology were developed and this technology ...
The Large Hadron Collider is working at about half its design value, limited by the defective splice...
In this section we present the magnet technology for the High Luminosity LHC. After a short review o...
The Large Hadron Collider (LHC) is one of the largest scientific instruments ever built. Since openi...
The primary goal of CERN and the Large Hadron Collider (LHC) community is to ensure that LHC is oper...
High energy hadron colliders have been instrumental to discoveries in particle physics at the energy...
The LHC will run to produce physics at the energy frontier of 13-14 TeV c.o.m. for protons for the n...
The maximum magnetic field available to guide and focus the proton beams will be the most important ...
I report the results of a CERN task force set up to investigate a possible staged upgrade of the LHC...
AbstractHigh energy hadron colliders have been instrumental to discoveries in particle physics at th...
High-energy colliders complementing and expanding the physics reach of LHC are presently under study...
The Large Hadron Collider (LHC) will provide particle physics with a tool to access the energy front...
Abstract: The superconducting magnet test facility at CERN has hosted the series test of the majorit...
The 2014 Particle Physics Project Prioritization Panel (P5) Report identified a critical need for tr...
The upcoming Luminosity upgrade of the LHC (HL-LHC) will rely on the use of Accelerator Quality Nb$_...
With the LHC, magnets of 10 T peak flux density Nb-Ti technology were developed and this technology ...