Cimmino, Anna (2010) Data Quality Monitoring and Performance Studies of the Resistive Plate Chamber Detector at the CMS Experiment at LHC. [Tesi di dottorato] (Inedito)

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Tipologia del documento: Tesi di dottorato
Lingua: English
Titolo: Data Quality Monitoring and Performance Studies of the Resistive Plate Chamber Detector at the CMS Experiment at LHC.
Autori:
AutoreEmail
Cimmino, Anna[non definito]
Data: 29 Novembre 2010
Numero di pagine: 130
Istituzione: Università degli Studi di Napoli Federico II
Dipartimento: Scienze fisiche
Scuola di dottorato: Scienze fisiche
Dottorato: Fisica fondamentale ed applicata
Ciclo di dottorato: 23
Coordinatore del Corso di dottorato:
nomeemail
Marrucci, Lorenzolorenzo.marrucci@na.infn.it
Tutor:
nomeemail
Sciacca, Crisostomocrisostomo.sciacca@na.infn.it
Paolucci, Pierluigipierluigi.paolucci@na.infn.it
Data: 29 Novembre 2010
Numero di pagine: 130
Parole chiave: data-quality, CMS, RPC
Settori scientifico-disciplinari del MIUR: Area 02 - Scienze fisiche > FIS/01 - Fisica sperimentale
Depositato il: 08 Dic 2010 15:24
Ultima modifica: 30 Apr 2014 19:44
URI: http://www.fedoa.unina.it/id/eprint/8150
DOI: 10.6092/UNINA/FEDOA/8150

Abstract

The CMS detector is a sophisticated and massive system: 7 different detector technologies, a high number of front-end electronic channels (10^7) , an input rate of 10^9 interactions per second, a trigger able to reduce the frequency by a factor 10^5, and online computer farms with a storage capability rates of about 10^2 MB/s. CMS is foreseen to take data, with high efficiency, for over 15 years. Clearly, assuring pristine and stable behavior of each of its components is critical and delicate task. The CMS collaboration designed and built, in tandem with detector commissioning, a high-level Data Quality Monitoring (DQM) system for the reliable certification of recorded data for physics analyses. DQM debugs hardware, monitors detector and trigger performance behavior, and highlight problems or malfunctioning by processing calibration and physics data. Definition of the requirements, design, and development of the RPC DQM system, as well as its use to study detector and trigger performance, have been the focus of this doctoral thesis work.

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