Published July 31, 2017 | Version v1

Characterization and optimization of Silicon Photomultipliers and small size scintillator tiles for future calorimeter applications

Authors/Creators

  • 1. ROR icon European Organization for Nuclear Research

Contributors

  • 1. ROR icon European Organization for Nuclear Research
  • 2. Eotvos U

Description

For the active layers of highly granular sampling calorimeters, small scintillator tiles read out by Silicon Photomultipliers (SiPM) can be an interesting and cost effective alternative to silicon sensors. At CERN a test setup was realized for the development of new generations of calorimeters to characterize new types of Silicon Photomultipliers in terms of gain, noise, afterpulses and crosstalk and to study the impact of scintillator wrappings and the tile size on the measured light yield and uniformity. In this thesis work, the experimental setup is described and the steps for commissioning the equipment are discussed. Then, the temperature dependence of the Silicon Photomultiplier response will be investigated, including the dependence of bare Silicon Photomultipliers as well as Silicon Photomultipliers coupled to scintillator tiles. Finally, the tile-photomultiplier response for different tile sizes and coating options will be evaluated. The experimental setup will be extended to allow for the characterization of the uniformity and the inter-tile crosstalk in multi-tile setups including two and four tiles.

Files

CERN-THESIS-2017-108.pdf

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Additional details

Identifiers

CDS
2277248
CDS Report Number
CERN-THESIS-2017-108

CERN

Department
PH - Physics Department
Programme
CERN Technical Student Program
Accelerator
CLIC
Studies
CLICdp

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