FoCal – A high granularity electromagnetic calorimeter for forward direct photon measurements
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Publication date
2017-02-11
Authors
Zhang, C.
ALICE Collaboration
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Supervisors
Document Type
Article
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taverne
Abstract
The measurement of direct photon production at forward rapidity (y∼3−5) at the LHC provides access to the structure of protons and nuclei at very small values of fractional momentum (x∼10−5). FoCal, an extremely-high-granularity Forward Calorimeter covering 3.3<η<5.3 is proposed as a detector upgrade to the ALICE experiment. To facilitate the design of the upgrade and to perform generic R&D necessary for such a novel calorimeter, a compact high-granularity electromagnetic calorimeter prototype has been built. The corresponding R&D studies are the focus of this paper. The prototype is a Si/W sampling calorimeter. It was instrumented with 24 layers of Monolithic Active Pixel Sensors, a total of 39 M pixels. We report on performance studies of the prototype with test beams at DESY and CERN in a broad energy range. The results of the measurements demonstrate a very small Molière radius (∼11mm) and good linearity of the response. Unique results on the detailed lateral shower shape, which are crucial for the two-shower separation capabilities, are presented. We compare the measurements to GEANT-based MC simulations, which additionally include a modeling of charge diffusion. The studies demonstrate the feasibility of this high-granularity technology for use in the proposed detector upgrade. They also show the extremely high potential of this technology for future calorimeter development.
Keywords
Forward Calorimeter (FoCal) prototype, High granularity, Small Molière radius, Two-shower separation, Taverne, Nuclear and High Energy Physics, Instrumentation
Citation
Zhang, C & ALICE Collaboration 2017, 'FoCal – A high granularity electromagnetic calorimeter for forward direct photon measurements', Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, vol. 845, pp. 542-547. https://doi.org/10.1016/j.nima.2016.06.075