Digital Hadron Calorimetry
Digital Hadron Calorimetry
Abstract
Calorimeters that can fully exploit the power of Particle Flow Algorithms, which attempt to measure each particle in a hadronic jet individually, emphasize spatial granularity over single particle energy resolution. In this context, the CALICE collaboration developed the Digital Hadron Calorimeter. The Digital Hadron Calorimeter uses Resistive Plate Chambers as active media and is read out with 1 x 1 cm2 pads and digital (1-bit) resolution. The Digital Hadron Calorimeter went through a broad beam test program over several years to yield a unique dataset of electromagnetic and hadronic interactions with unprecedented spatial resolution. In addition to conventional calorimetry, the Digital Hadron Calorimeter offers detailed measurements of event shapes, rigorous tests of simulation models and various analytical tools to improve calorimetric performance. Here we report on the results from the analysis of DHCAL data and comparisons with the Monte Carlo simulations across various test campaigns. © 2021 IEEE.
Description
2021 IEEE Nuclear Science Symposium and Medical Imaging Conference, NSS/MIC 2021 -- 16 October 2021 through 23 October 2021 -- 182674
Keywords
Calorimetry, Hadrons, Intelligent systems, Monte Carlo methods, Software testing, Statistical tests, Active media, Digital hadron calorimeters, Energy resolutions, Hadron calorimetry, Hadronic jets, Particle flow algorithms, Power, Resistive plates chambers, Single-particle energy, Spatial granularity, Calorimeters
Fields of Science
03 medical and health sciences, 0302 clinical medicine, 0103 physical sciences, 01 natural sciences
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1
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5
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