Published October 2010 | Version v1
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Study of the performances of the ALICE muon spectrometer trigger at LHC

Description

The QCD theory (Quantum Chromodynamics) predicts the presence of a new phase of the nuclear matter at very high temperature. This phase, characterized by a deconfinement of quarks within hadrons, is called QGP (Quark Gluon Plasma). The muon spectrometer of the ALICE experiment (A Large Ion Collider Experiment) aims at investigating the properties of the QGP at the extreme energy density reached in heavy ion collisions at LHC (Large Hadron Collider). The trigger system of the Muon Spectrometer, called MUON TRG mainly come under the responsibility of the Clermont-Ferrand ALICE team. It consists of four planes of RPC (Resistive Plate Chamber) detectors with a total area of 140 m2, 21 k front-end channels and fast-decision electronics. It is designed to reconstruct (muon) tracks online, in a large background environment. A fast trigger decision, for both single-muons and dimuons, is delivered each 25 ns (40 MHz) with a latency with respect to the interaction of about 800 ns. The performances, especially the ones related to trigger decision, obtained with dedicated test tools, cosmic rays, first LHC injection beams and first proton-proton collisions at √s = 900 GeV will be presented. (author)

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Additional details

Additional titles

Original title (French)
Etude des performances du Trigger du spectrometre a muons d'ALICE au LHC

Publishing Information

Imprint Pagination
182 p.
Report number
FRNC-TH--8085

Optional Information

Notes
93 refs.; Also available from Bibliotheque Clermont Universite-Service bibliotheque numerique, Campus des Cezeaux BP40226, 63174 Aubiere cedex France