2014•Research Explorer (The University of Manchester)Requires access

Proton scattering and collimation for the LHC and LHC luminosity upgrade

James Molson

Open publisher page 9 citations

Abstract

The Large Hadron collider (LHC) is a 7\,TeV per beam proton-proton collider.The high stored beam energy of the LHC (361.6\,MJ) requires unprecedented machine protection systems.As demonstrated in September 2008, failure of any one of these systems can lead to considerable damage, and hence delays in the physics schedule.In addition to various quench protection systems and interlocks, a beam collimation system is installed to protect against regular and irregular beam loss, with the aim of protecting against superconducting magnet quenches.The high 8.33T magnetic field of the main arc bending magnets leads to a quench when exposed to beam energy leakage of $5\,\textrm{mW cm}^{-3}$.In order to ensure accurate running of this system, computer simulations must be created.A tracking code, Merlin, has been adapted to simulate the features of the collimation system.New physics models for the simulation of protons interacting in a collimator jaw have been created, and these have been fitted to all experimental scattering data for the first time.Merlin has been used to simulate beam loss in the LHC, and a comparison of the effect of these different physics models have been made.Finally, a luminosity upgrade, the High Luminosity Large Hadron Collider is to be installed in the 2020s.Merlin has also been used to simulate the collimation system for this upgrade in order to ensure reliable future operation of this upgrade.

About this research paper

What this paper is about

The Large Hadron collider (LHC) is a 7\,TeV per beam proton-proton collider.The high stored beam energy of the LHC (361.6\,MJ) requires unprecedented machine protection systems.As demonstrated in September 2008, failure of any one of these systems can lead to considerable damage, and hence delays in the physics schedule.In addition to various quench protection systems and interlocks, a beam collimation system is installed to protect against regular and irregular beam loss, with the aim of protecting against superconducting magnet quenches.The high 8.33T magnetic field of the main arc bending magnets leads to a quench when exposed to beam energy leakage of $5\,\textrm{mW cm}^{-3}$.In order to ensure accurate running of this system, computer simulations must be created.A tracking code, Merlin, has been adapted to simulate the features of the collimation system.New physics models for the simulation of protons interacting in a collimator jaw have been created, and these have been fitted to all experimental scattering data for the first time.Merlin has been used to simulate beam loss in the LHC, and a comparison of the effect of these different physics models have been made.Finally, a luminosity upgrade, the High Luminosity Large Hadron Collider is to be installed in the 2020s.Merlin has also been used to simulate the collimation system for this upgrade in order to ensure reliable future operation of this upgrade.

Why it matters

OpenAlex reports 9 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

The Large Hadron collider (LHC) is a 7\,TeV per beam proton-proton collider.The high stored beam energy of the LHC (361.6\,MJ) requires unprecedented machine protection systems.As demonstrated in September 2008, failure of any one of these systems can lead to considerable damage, and hence delays in the physics schedule.In addition to various quench protection systems and interlocks, a beam collimation system is installed to protect against regular and irregular beam loss, with the aim of protecting against superconducting magnet quenches.The high 8.33T magnetic field of the main arc bending magnets leads to a quench when exposed to beam energy leakage of $5\,\textrm{mW cm}^{-3}$.In order to ensure accurate running of this system, computer simulations must be created.A tracking code, Merlin, has been adapted to simulate the features of the collimation system.New physics models for the simulation of protons interacting in a collimator jaw have been created, and these have been fitted to all experimental scattering data for the first time.Merlin has been used to simulate beam loss in the LHC, and a comparison of the effect of these different physics models have been made.Finally, a luminosity upgrade, the High Luminosity Large Hadron Collider is to be installed in the 2020s.Merlin has also been used to simulate the collimation system for this upgrade in order to ensure reliable future operation of this upgrade.

Key concepts: Large Hadron Collider, Physics, Upgrade, Nuclear physics, Collimator, Collimated light, Luminosity, Superconducting magnet

Related papers

Back to paper searchBrowse research topicsOriginal source
Proton scattering and collimation for the LHC and LHC luminosity upgrade — Research Paper | ScholarLens