The LHC beams are designed to have high stability and to be stored for many hours. The nominal beam intensity lifetime is expected to be of the order of 20h. The Phase II collimation system has to be able to handle particle losses in stable physics conditions at 7 TeV in order to avoid beam aborts and to allow correction of parameters and restoration to nominal conditions. Monte Carlo simulations are needed in order to evaluate the behavior of metallic high-Z collimators during operation scenarios using a realistic distribution of losses, which is a mix of the three limiting halo cases. Moreover, the consequences in the IR7 insertion of the worst (case) abnormal beam loss are evaluated. The case refers to a spontaneous trigger of the horizo...
The Large Hadron Collider (LHC) collimation system is installed and commissioned in different phases...
Injection intensities for the LHC are over an order of magnitude above the damage threshold. The col...
The CERN Large Hadron Collider is routinely storing proton beam intensities of more than 100 MJ, whi...
The LHC beams are designed to have high stability and to be stored for many hours. The nominal beam ...
The LHC beams are designed to have high stability and to be stored for many hours. The nominal beam ...
Due to the known limitations of Phase I LHC collimators in stable physics conditions, the LHC collim...
A system of collimators has been designed to protect the superconducting LHC magnets against quench ...
The LHC collimation system has been re-designed over in order to address the unprecedented challenge...
In the LHC all multi-turn losses should occur at the collimators in the cleaning insertions. The cle...
The Large Hadron Collider extends the present state-of-the-art in stored beam energy by 2-3 orders o...
The upgrade of the LHC energy and brightness, from the 2015 restart at close to design energy until ...
Results of simulations with all movable elements of the LHC collimation system [1] are discussed for...
One of the main purposes of tracking simulations for collimation studies is to produce loss maps al...
The design and construction of new injectors will allow to boost the luminosity of the LHC. Two cons...
The CERN Large Hadron Collider (LHC) is designed to collide proton beams of unprecedented energy, in...
The Large Hadron Collider (LHC) collimation system is installed and commissioned in different phases...
Injection intensities for the LHC are over an order of magnitude above the damage threshold. The col...
The CERN Large Hadron Collider is routinely storing proton beam intensities of more than 100 MJ, whi...
The LHC beams are designed to have high stability and to be stored for many hours. The nominal beam ...
The LHC beams are designed to have high stability and to be stored for many hours. The nominal beam ...
Due to the known limitations of Phase I LHC collimators in stable physics conditions, the LHC collim...
A system of collimators has been designed to protect the superconducting LHC magnets against quench ...
The LHC collimation system has been re-designed over in order to address the unprecedented challenge...
In the LHC all multi-turn losses should occur at the collimators in the cleaning insertions. The cle...
The Large Hadron Collider extends the present state-of-the-art in stored beam energy by 2-3 orders o...
The upgrade of the LHC energy and brightness, from the 2015 restart at close to design energy until ...
Results of simulations with all movable elements of the LHC collimation system [1] are discussed for...
One of the main purposes of tracking simulations for collimation studies is to produce loss maps al...
The design and construction of new injectors will allow to boost the luminosity of the LHC. Two cons...
The CERN Large Hadron Collider (LHC) is designed to collide proton beams of unprecedented energy, in...
The Large Hadron Collider (LHC) collimation system is installed and commissioned in different phases...
Injection intensities for the LHC are over an order of magnitude above the damage threshold. The col...
The CERN Large Hadron Collider is routinely storing proton beam intensities of more than 100 MJ, whi...