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Sökning: WFRF:(Strandberg A.) > Rapport

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  • Abulaiti, Yiming, et al. (författare)
  • Technical Design Report for the Phase-II Upgrade of the ATLAS Tile Calorimeter
  • 2018
  • Rapport (övrigt vetenskapligt/konstnärligt)abstract
    • This Technical Design Report describes the project to upgrade the ATLAS Tile Calorimeter for the operation at the High Luminosity LHC. The High Luminosity LHC is planned to begin operation in 2026 and to deliver more than ten times the integrated luminosity (up to 4000 fb"^{-1}" of the LHC Runs 1-3 combined. To achieve this integrated luminosity in a reasonable amount of time, an instantaneous luminosity of up to "7.5\times 10^{34} cm^{-2}s^{-1}" is required, corresponding to up to 200 simultaneous pp interactions per bunch crossing. The large luminosity offers the opportunity for a wealth of physics measurements but presents significant challenges to the detector as well as to the trigger and data acquisition systems in the form of increased trigger rates and detector occupancy. This document summarises the requirements and motivations for the Tile Calorimeter upgrade and gives a detailed technical description of the different components. It describes the beam tests with the prototypes in recent years and the plans for the assembly, quality assurance and the integration of the final system. The document also presents the key aspects of project management with an overview of the organisation, the schedule and the cost.
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  • Armbruster, A., et al. (författare)
  • Higgs boson searches in gluon fusion and vector boson fusion using the H $\to$ WW decay mode
  • 2009
  • Rapport (refereegranskat)abstract
    • The prospects for Higgs searches in the H + 0j (H to WW to e-nu mu-nu ), H + 2j (H to WW to e-nu mu-nu ), and H + 2 j (H to WW to l-nu qq) channels at ATLAS are presented, including realistic effects such as trigger efficiencies and detector misalignment, with an emphasis on practical methods to estimate the backgrounds using control samples in data. With 10 fb−1 of integrated luminosity, one would expect to be able to discover a Standard Model Higgs boson in the mass range 135 < mH < 190 GeV and to be able to measure its mass with a precision of about 7 GeV if its true mass is 130 GeV or about 2 GeV if its true mass is 160 GeV.
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