• Title of article

    A high granularity imaging calorimeter for cosmic-ray physics

  • Author/Authors

    Boezio، نويسنده , , M and Bonvicini، نويسنده , , V and Mocchiutti، نويسنده , , E and Schiavon، نويسنده , , P and Scian، نويسنده , , G and Vacchi، نويسنده , , A and Zampa، نويسنده , , G and Zampa، نويسنده , , N، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2002
  • Pages
    16
  • From page
    407
  • To page
    422
  • Abstract
    An imaging calorimeter has been designed and is being built for the PAMELA satellite-borne experiment. The physics goals of the experiment are the measurement of the flux of antiprotons, positrons and light isotopes in the cosmic radiation. lorimeter is designed to perform a precise measurement of the total energy deposited, to reconstruct the spatial development of the showers (both in the longitudinal and in the transverse directions), and to measure the energy distribution along the shower itself. From this information, the calorimeter will identify antiprotons from an electron background and positrons in a background of protons with an efficiency of about 95% and a rejection power better than 10−4. Furthermore, a self-trigger system has been implemented with the calorimeter that will be employed to measure high-energy (from about 300 GeV to more than 1 TeV) electrons. strument is composed of 22 layers of tungsten, each sandwiched between two “views” of silicon strip detectors (X and Y). The signals are read out by a custom VLSI front-end chip, the CR1.4P, specifically designed for the PAMELA calorimeter, with a dynamic range of 7.14 pC or 1400 minimum ionizing particle (mip). ort on the simulated performance and prototype design.
  • Keywords
    Calorimetry , Satellite instrumentation , Cosmic rays
  • Journal title
    Nuclear Instruments and Methods in Physics Research Section A
  • Serial Year
    2002
  • Journal title
    Nuclear Instruments and Methods in Physics Research Section A
  • Record number

    2196939