We report on the performance of a fine-grained 13-ton lead/scintillating-fiber calorimeter, in particular on its response to electrons, pions and multiparticles (reaction products from pions interacting in a target upstream of the detector). The detector signals were studied for particles in the energy range 5-150 GeV. The energy resolution was measured to be 12.9% √E for electrons, plus a constant term dependent on the angle θZ between the particle's direction and the fiber axis. This term, which is 1.2% for θz = 3°, is shown to be due to anomalous sampling in the early shower stage. It is greatly reduced when only electrons entering the detector in the lead are considered. A 1.7X0 thick preshower detector, installed 12 cm in front of the ...
We report on the design and performance of the lead-scintillating fiber calorimeter of the CHORUS ex...
AbstractWe are studying next generation scintillation detectors for future collider experiments. For...
The performance of the RD52 dual-readout calorimeter is measured for very small angles of incidence ...
In this paper, we describe measurements of the response functions of a fiber-based dual-readout calo...
Hadronic response and electron identification performance of the new H1 lead-scintillating fibre cal...
An experimental investigation has been carried out on the properties of electromagnetic shower detec...
Typescript (photocopy).A Pb/scintillator sampling calorimeter covering the pseudorapidity interval o...
An experimental investigation has been carried out on the properties of electromagnetic shower detec...
The properties of final modules of a high resolution lead/scintillating-fibre calorimeter to upgrade...
We have measured performance of a lead/plastic scintillator sampling calorimeter in two separate bea...
We present the results of beam tests with high-energy (8-375 GeV) electrons, pions, protons and muon...
In this paper, we describe the first tests of a dual-readout fiber calorimeter in which silicon phot...
The construction and tests performed on a smal prototype of lead-scintillating fiber calorimeter ins...
A prototype of a dual-readout calorimeter using brass capillary tubes surrounding scintillating and ...
We report on the design and performance of the lead-scintillating fiber calorimeter of the CHORUS ex...
AbstractWe are studying next generation scintillation detectors for future collider experiments. For...
The performance of the RD52 dual-readout calorimeter is measured for very small angles of incidence ...
In this paper, we describe measurements of the response functions of a fiber-based dual-readout calo...
Hadronic response and electron identification performance of the new H1 lead-scintillating fibre cal...
An experimental investigation has been carried out on the properties of electromagnetic shower detec...
Typescript (photocopy).A Pb/scintillator sampling calorimeter covering the pseudorapidity interval o...
An experimental investigation has been carried out on the properties of electromagnetic shower detec...
The properties of final modules of a high resolution lead/scintillating-fibre calorimeter to upgrade...
We have measured performance of a lead/plastic scintillator sampling calorimeter in two separate bea...
We present the results of beam tests with high-energy (8-375 GeV) electrons, pions, protons and muon...
In this paper, we describe the first tests of a dual-readout fiber calorimeter in which silicon phot...
The construction and tests performed on a smal prototype of lead-scintillating fiber calorimeter ins...
A prototype of a dual-readout calorimeter using brass capillary tubes surrounding scintillating and ...
We report on the design and performance of the lead-scintillating fiber calorimeter of the CHORUS ex...
AbstractWe are studying next generation scintillation detectors for future collider experiments. For...
The performance of the RD52 dual-readout calorimeter is measured for very small angles of incidence ...