State-of-the-art tracking tools were recently developed at CERN to study the cleaning efficiency of the Large Hadron Collider (LHC) collimation system . These tools are fully transportable, meaning that any accelerator lattice that includes a collimation systemcan be simulated. Each of the two Relativistic Heavy Ion Collider (RHIC) beam lines features a multi-stage collimation system, therefore dedicated datasets from RHIC operations with proton beams can be used to benchmark the tracking codes and assess the accuracy of the predicted hot spots along the LHC
The LHC collimation system protects superconducting magnets from beam losses. By design, it was opt...
A prototype of an LHC collimator has been tested with proton beams at the CERN SPS. The interaction ...
The performance of the LHC as a heavy-ion collider is expected to be limited by a variety of beam lo...
State-of-the-art tracking tools were recently developed at CERN to study the cleaning efficiency of ...
State-of-the-art tracking tools were recently developed at CERN to study the cleaning efficiency of ...
State-of-the-art tracking tools were developed at CERN to determine the cleaning efficiency of the L...
State-of-the-art tracking tools have been developed for detailed LHC collimation and beam loss studi...
The CERN Large Hadron Collider is routinely storing proton beam intensities of more than 100 MJ, whi...
One of the main purposes of tracking simulations for collimation studies is to produce loss maps al...
AbstractThe Large Hadron Collider (LHC) at CERN pushes forward to new regimes in terms of beam energ...
The CERN Large Hadron Collider (LHC) is designed to collide proton beams of unprecedented energy, in...
In the 2011 Large Hadron Collider run, collimators were aligned for proton and heavy ion beams using...
The Large Hadron Collider (LHC) at CERN pushes forward to new regimes in terms of beam energy and in...
Results of simulations with all movable elements of the LHC collimation system [1] are discussed for...
The collimation efficiency for Pb ion beams in the LHC is predicted to be lower than requirements. N...
The LHC collimation system protects superconducting magnets from beam losses. By design, it was opt...
A prototype of an LHC collimator has been tested with proton beams at the CERN SPS. The interaction ...
The performance of the LHC as a heavy-ion collider is expected to be limited by a variety of beam lo...
State-of-the-art tracking tools were recently developed at CERN to study the cleaning efficiency of ...
State-of-the-art tracking tools were recently developed at CERN to study the cleaning efficiency of ...
State-of-the-art tracking tools were developed at CERN to determine the cleaning efficiency of the L...
State-of-the-art tracking tools have been developed for detailed LHC collimation and beam loss studi...
The CERN Large Hadron Collider is routinely storing proton beam intensities of more than 100 MJ, whi...
One of the main purposes of tracking simulations for collimation studies is to produce loss maps al...
AbstractThe Large Hadron Collider (LHC) at CERN pushes forward to new regimes in terms of beam energ...
The CERN Large Hadron Collider (LHC) is designed to collide proton beams of unprecedented energy, in...
In the 2011 Large Hadron Collider run, collimators were aligned for proton and heavy ion beams using...
The Large Hadron Collider (LHC) at CERN pushes forward to new regimes in terms of beam energy and in...
Results of simulations with all movable elements of the LHC collimation system [1] are discussed for...
The collimation efficiency for Pb ion beams in the LHC is predicted to be lower than requirements. N...
The LHC collimation system protects superconducting magnets from beam losses. By design, it was opt...
A prototype of an LHC collimator has been tested with proton beams at the CERN SPS. The interaction ...
The performance of the LHC as a heavy-ion collider is expected to be limited by a variety of beam lo...