We report on the results of an extensive R&D program aimed at the evaluation of Thick-Gas Electron Multipliers (THGEM) as potential active elements for Digital Hadron Calorimetry (DHCAL). Results are presented on efficiency, pad multiplicity and discharge probability of a 10x10 cm2 prototype detector with 1 cm2 readout pads. The detector is comprised of single- or double-THGEM multipliers coupled to the pad electrode either directly or via a resistive anode. Investigations employing standard discrete electronics and the KPiX readout system have been carried out both under laboratory conditions and with muons and pions at the CERN RD51 test beam. For detectors having a charge-induction gap, it has been shown that even a ~6 mm thick single-TH...
Within the CALICE collaboration, several concepts for the hadronic calorimeter of a future linear co...
International audienceA sampling hadronic calorimeter with gaps instrumented with thin MICROMEGAS ch...
We are developing large size THick GEM (THGEM)-based detectors of single photons, mainly meant for C...
Thick Gas Electron Multipliers (THGEMs) have the potential of constituting thin, robust sampling ele...
Thick Gas Electron Multipliers (THGEMs) have the potential of constituting thin, robust sampling ele...
Beam studies of thin single- and double-stage THGEM-based detectors are presented. Several 10 x 10 c...
International audienceDigital and Semi-Digital Hadronic Calorimeters (S)DHCAL were suggested for fut...
A thick gas electron multiplier is considered for radiation-hard detectors (hadron calorimeter). The...
ABSTRACT: Beam studies of thin single- and double-stage THGEM-based detectors are presented. Several...
The Thick Gaseous Electron Multiplier (THGEM) is a simple and robust electrode suitable for large ar...
THick Gaseous Electron Mulitpliers (THGEM) are used to create significant gain and increase energy r...
The development of a large size gaseous detector of single photons, able to stably operate at high g...
AbstractThe High Energy Physics group of the University of Texas at Arlington Physics Department has...
We report about the development status of large area gaseous single photon detectors based on a nove...
AbstractThe detectors proposed for future e+e- colliders (ILC and CLIC) demand a high level of preci...
Within the CALICE collaboration, several concepts for the hadronic calorimeter of a future linear co...
International audienceA sampling hadronic calorimeter with gaps instrumented with thin MICROMEGAS ch...
We are developing large size THick GEM (THGEM)-based detectors of single photons, mainly meant for C...
Thick Gas Electron Multipliers (THGEMs) have the potential of constituting thin, robust sampling ele...
Thick Gas Electron Multipliers (THGEMs) have the potential of constituting thin, robust sampling ele...
Beam studies of thin single- and double-stage THGEM-based detectors are presented. Several 10 x 10 c...
International audienceDigital and Semi-Digital Hadronic Calorimeters (S)DHCAL were suggested for fut...
A thick gas electron multiplier is considered for radiation-hard detectors (hadron calorimeter). The...
ABSTRACT: Beam studies of thin single- and double-stage THGEM-based detectors are presented. Several...
The Thick Gaseous Electron Multiplier (THGEM) is a simple and robust electrode suitable for large ar...
THick Gaseous Electron Mulitpliers (THGEM) are used to create significant gain and increase energy r...
The development of a large size gaseous detector of single photons, able to stably operate at high g...
AbstractThe High Energy Physics group of the University of Texas at Arlington Physics Department has...
We report about the development status of large area gaseous single photon detectors based on a nove...
AbstractThe detectors proposed for future e+e- colliders (ILC and CLIC) demand a high level of preci...
Within the CALICE collaboration, several concepts for the hadronic calorimeter of a future linear co...
International audienceA sampling hadronic calorimeter with gaps instrumented with thin MICROMEGAS ch...
We are developing large size THick GEM (THGEM)-based detectors of single photons, mainly meant for C...