The hadronic performance of a Dual-Readout calorimeter consisting of a crystal em section and a hadronic section read out with two types of optical fibers is studied with 200 GeV π+. The em fraction of hadronic showers developing in this calorimeter system is determined event by event from the relative amounts of Cherenkov light and scintillation light produced in the shower development. Data are presented for two types of crystals (PbWO4 and BGO), each of which offers unique opportunities in this respect. The information obtained with this technique may lead to an important improvement in the hadronic calorimeter performance
Some high-Z scintillating crystals offer the possibility to distinguish the contributions from the s...
Crystal calorimeter has traditionally played an important role in precision measurement of electrons...
Present calorimetric systems give a global information on the total energy deposit at a given time i...
The hadronic performance of a Dual-Readout calorimeter consisting of a crystal em section and a hadr...
Results are presented of beam tests in which a small electromagnetic calorimeter consisting of lead ...
The possibility of evaluating the amount of the energy released by the electromagnetic part of a had...
Beam tests of a hybrid dual-readout calorimeter are described. The electromagnetic section of this i...
Studies of requirements and specifications of crystals are necessary to develop a new generation of ...
Dual Readout Calorimetry is a promising new technique for highresolution calorimetry. It is based on...
This document constitutes the final report on the project Dual-Readout Calorimetry for High-Quality ...
Dual-readout calorimetry is a calorimetric technique able to overcome the noncompensation limit by s...
The Dual REAdout Method (DREAM) consists in comparing the scintillation and Cherenkov light generat...
We present a systematic study of lead tungstate crystals doped with a small fraction of molybdenum, ...
The 4th Concept calorimeter design is built upon criteria that result from the DREAM prototype: by u...
The meta-crystals concept is an approach that consists of using both undoped and properly doped heav...
Some high-Z scintillating crystals offer the possibility to distinguish the contributions from the s...
Crystal calorimeter has traditionally played an important role in precision measurement of electrons...
Present calorimetric systems give a global information on the total energy deposit at a given time i...
The hadronic performance of a Dual-Readout calorimeter consisting of a crystal em section and a hadr...
Results are presented of beam tests in which a small electromagnetic calorimeter consisting of lead ...
The possibility of evaluating the amount of the energy released by the electromagnetic part of a had...
Beam tests of a hybrid dual-readout calorimeter are described. The electromagnetic section of this i...
Studies of requirements and specifications of crystals are necessary to develop a new generation of ...
Dual Readout Calorimetry is a promising new technique for highresolution calorimetry. It is based on...
This document constitutes the final report on the project Dual-Readout Calorimetry for High-Quality ...
Dual-readout calorimetry is a calorimetric technique able to overcome the noncompensation limit by s...
The Dual REAdout Method (DREAM) consists in comparing the scintillation and Cherenkov light generat...
We present a systematic study of lead tungstate crystals doped with a small fraction of molybdenum, ...
The 4th Concept calorimeter design is built upon criteria that result from the DREAM prototype: by u...
The meta-crystals concept is an approach that consists of using both undoped and properly doped heav...
Some high-Z scintillating crystals offer the possibility to distinguish the contributions from the s...
Crystal calorimeter has traditionally played an important role in precision measurement of electrons...
Present calorimetric systems give a global information on the total energy deposit at a given time i...