Steel tubes of approximately 8 mm O.D., filled with Argon gas to approx. 200 bar, are considered as the active element for a charge collecting sampling calorimeter readout system. The tubes are permanently sealed and operated in the ion chamber mode, with the charge collection on a one-millimeter concentric anode. We present the motivation for such a device, including Monte Carlo predictions of performance. The method of construction and signal collection are discussed, with initial results on leakage and ageing of the filling gas. A prototype electromagnetic calorimeter is described
A Prototype of a lead liquid argon accordion calorimeter with two types of cylindrical geometry was ...
We present the first test of the application of the parallel plate chamber principles for the design...
Calorimetry plays a key role in high energy physics experiments. Multipurpose detectors installed at...
This short review will be concerned with questions which arise in the design and construction of cal...
A prototype module of an iron-gas sampling calorimeter based on parallel-plate chambers, full-size d...
An iron sampling calorimeter with warm-liquid ionization chambers has been tested at the CERN SPS in...
We have studied the energy resolution of a prototype gas tracking calorimeter in a test beam at Ferm...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
Dual phase time projection chambers with amplification of ionization electrons provide a novel techn...
A calorimeter design based on high-pressure gas-ionization tubes arranged nearly parallel to the inc...
Contribution to 13th Pisa Meeting on Advanced Detectors, La Biodola (Italie) 24-30/05/2015 - Equipe ...
A prototype lead-liquid-argon electromagnetic calorimeter with parallel plates and Accordion geometr...
The baseline option for the very forward calorimetry in the CMS experiment is an iron/gas calorimete...
AbstractWe describe a novel gas-Cherenkov calorimeter, which detects Cherenkov light showers emitted...
A calorimeter design based on high-pressure gas-ionization tubes arranged nearly parallel to the inc...
A Prototype of a lead liquid argon accordion calorimeter with two types of cylindrical geometry was ...
We present the first test of the application of the parallel plate chamber principles for the design...
Calorimetry plays a key role in high energy physics experiments. Multipurpose detectors installed at...
This short review will be concerned with questions which arise in the design and construction of cal...
A prototype module of an iron-gas sampling calorimeter based on parallel-plate chambers, full-size d...
An iron sampling calorimeter with warm-liquid ionization chambers has been tested at the CERN SPS in...
We have studied the energy resolution of a prototype gas tracking calorimeter in a test beam at Ferm...
The CALICE collaboration is studying the design of high performance electromagnetic and hadronic cal...
Dual phase time projection chambers with amplification of ionization electrons provide a novel techn...
A calorimeter design based on high-pressure gas-ionization tubes arranged nearly parallel to the inc...
Contribution to 13th Pisa Meeting on Advanced Detectors, La Biodola (Italie) 24-30/05/2015 - Equipe ...
A prototype lead-liquid-argon electromagnetic calorimeter with parallel plates and Accordion geometr...
The baseline option for the very forward calorimetry in the CMS experiment is an iron/gas calorimete...
AbstractWe describe a novel gas-Cherenkov calorimeter, which detects Cherenkov light showers emitted...
A calorimeter design based on high-pressure gas-ionization tubes arranged nearly parallel to the inc...
A Prototype of a lead liquid argon accordion calorimeter with two types of cylindrical geometry was ...
We present the first test of the application of the parallel plate chamber principles for the design...
Calorimetry plays a key role in high energy physics experiments. Multipurpose detectors installed at...