Measurements and Simulations of Ionization Chamber Signals in Mixed Radiation Fields for the LHC BLM System

The LHC beam loss monitoring (BLM) system must prevent the superconducting magnets from quenching and protect the machine components from damage. The main monitor type is an ionization chamber. About 4000 of them will be installed around the ring. The lost beam particles initiate hadronic showers th...

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Hauptverfasser: Stockner, M., Dehning, B., Fabjan, C., Ferioli, G., Holzer, E.B.
Format: Tagungsbericht
Sprache:eng
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Zusammenfassung:The LHC beam loss monitoring (BLM) system must prevent the superconducting magnets from quenching and protect the machine components from damage. The main monitor type is an ionization chamber. About 4000 of them will be installed around the ring. The lost beam particles initiate hadronic showers through the magnets, which are measured by the monitors installed outside of the cryostat around each quadrupole magnet. They probe the far transverse tail of the hadronic shower. The specification for the BLM system includes a factor of two absolute precision on the prediction of the quench levels. To reach this accuracy a number of simulations are being combined to calibrate the monitor signals. To validate the monitor calibration the simulations are compared with test measurements. This paper will focus on the simulated prediction of the development of the hadronic shower tails and the signal response of ionization chambers to various particle types and energies. Test measurements have been performed at CERN and DESY and compared to Geant4 simulations.
ISSN:1082-3654
2577-0829
DOI:10.1109/NSSMIC.2006.354151