@inproceedings{42baeb84052a402b9eaf7ab1eefb3d2a,
title = "A study of a new concept of high resolution hadron calorimeter",
abstract = "We present a novel calorimeter concept capable of achieving energy resolution better than 25%/√E for single hadrons and jets. The energy resolution improvement is achieved by utilizing the Cerenkov photon signal as an estimator of the energy loss due to nuclear processes. We demonstrate the excellent energy resolution for the case of a large homogeneous calorimeter by GEANT4 simulation. We also investigate a possible design of a sampling calorimeter involving alternating lead glass and scintillator planes. This design enables construction of a calorimeter with arbitrary segmentation in the transverse direction and in depth, as is required by many high-energy physics experiments. Such a calorimeter would at the same time enable excellent energy resolution for electrons and photons.",
author = "Adam Para and Niki Saoulidou and Hans Wenzel and Yu, {Shin Shan} and Tianchi Zhao",
year = "2006",
doi = "10.1109/NSSMIC.2006.356131",
language = "???core.languages.en_GB???",
isbn = "1424405610",
series = "IEEE Nuclear Science Symposium Conference Record",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "167--170",
booktitle = "2006 IEEE Nuclear Science Symposium - Conference Record",
note = "2006 IEEE Nuclear Science Symposium, Medical Imaging Conference and 15th International Workshop on Room-Temperature Semiconductor X- and Gamma-Ray Detectors, Special Focus Workshops, NSS/MIC/RTSD ; Conference date: 29-10-2006 Through 04-11-2006",
}