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- W1607195130 abstract "Linear electron-positron colliders are proposed to complement and extend the physicsprogramme of the Large Hadron Collider at CERN. In order to satisfy the physicsgoal requirements at linear colliders, detector concepts based on the Particle Flowapproach are developed. Central to this approach are a high resolution trackerand a highly granular calorimeter which provide excellent jet energy resolution andbackground separation.The Compact Linear Collider (CLIC) is an electron-positron collider under study,aiming at centre-of-mass energies up to 3TeV. For the barrel hadronic calorimeterof experiments at CLIC, a detector with tungsten absorber plates is considered, as itis able to contain shower jets while keeping the diameter of the surrounding solenoidmagnet limited.A highly granular analogue hadron calorimeter with tungsten absorbers was builtby the CALICE collaboration. This thesis presents the analysis of the low-momentumdata (1 GeV � p � 10 GeV) recorded in 2010 at the CERN Proton Synchrotron (PS).The energy resolution is measured for electrons, pions and protons, and is comparedwith the performance of other calorimeters. In addition, comparisons of datawith Monte Carlo are done for hadronic shower shapes, in order to validate Geant4simulation models of the development of hadronic showers in tungsten.The electromagnetic resolution for a tungsten based HCAL is worse than for aniron based HCAL. This is expected due to the shorter radiation length of tungsten.The shower maximum tmax for electrons is between 3.9 X0 and 5.6 X0. The meanshower radius has a maximum value of 62 mm at 1 GeV and decreases to 26 mm at6 GeV. The mean shower radius for protons is between 74 mm and 81 mm, whilefor the pions they are between 69 mm and 78 mm.Three physics lists were studied to validate the hadron interactions in tungsten:QGSP_BERT_HP, FTFP_BERT_HP and QGSP_BIC_HP. In general the MonteCarlo is within 8% agreement with the data." @default.
- W1607195130 created "2016-06-24" @default.
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- W1607195130 date "2012-01-01" @default.
- W1607195130 modified "2023-09-26" @default.
- W1607195130 title "Interactions of particles with momenta of 1–10 GeV in a highly granular hadronic calorimeter with tungsten absorbers" @default.
- W1607195130 hasPublicationYear "2012" @default.
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