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Particle Physics in the LHC Era$
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Giles Barr, Robin Devenish, Roman Walczak, and Tony Weidberg

Print publication date: 2016

Print ISBN-13: 9780198748557

Published to Oxford Scholarship Online: March 2016

DOI: 10.1093/acprof:oso/9780198748557.001.0001

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PRINTED FROM OXFORD SCHOLARSHIP ONLINE (www.oxfordscholarship.com). (c) Copyright Oxford University Press, 2019. All Rights Reserved. An individual user may print out a PDF of a single chapter of a monograph in OSO for personal use. date: 15 October 2019

Particle detectors

Particle detectors

Chapter:
(p.71) 4 Particle detectors
Source:
Particle Physics in the LHC Era
Author(s):

G. Barr

R. Devenish

R. Walczak

T. Weidberg

Publisher:
Oxford University Press
DOI:10.1093/acprof:oso/9780198748557.003.0004

This chapter starts with an overview of collider detectors before describing interactions of particles with matter, which provides a physics foundation for the design of particle detectors. Ionization, multiple scattering, transition and Čerenkov radiation by charged particles, as well as bremsstrahlung and nuclear interactions of high-energy hadrons, are described. This is followed by an explanation of how energy loss in matter leads to signal generation, such as by moving charges in electric fields and light emission in scintillators. Detectors for photons, detectors for reconstruction of tracks of charged particles (with the use of magnets), such as wire chambers and silicon detectors, and electromagnetic and hadronic calorimeters to measure energies of particles and jets of particles are described and their use for particle identification explained. The chapter concludes with an explanation of the role of triggers and two examples of detector systems: the ATLAS and CMS detectors at the LHC.

Keywords:   ionization, Čerenkov and transition radiation, multiple scattering, wire chamber, silicon detector, scintillator, bremsstrahlung, electromagnetic and hadronic calorimeters, nuclear interaction, trigger

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