The RD52 dual-readout calorimeter is a longitudinally unsegmented instrument intended for the detection of both electromagnetically and hadronically interacting particles with unprecedented precision. In this paper, the identification of the showering particles and, in particular, the identification of electrons and γs with this instrument are investigated. The techniques used for this purpose include differences in the shower development observed with scintillation light and Cherenkov radiation, the radial shower profile of the particles and the time structure (including the starting point) of the calorimeter signals. It turns out that, at 60 GeV, electrons can be correctly identified in 99.8% of the cases, by means of criteria that elimin...
CERN Summer Student Report: Highly granular hadronic calorimeters optimized for the Particle Flow Pa...
We present an approach to derive longitudinal shower development information from the longitudinally...
A particle identification method is presented, in which calculations of AE energy losses are stored ...
AbstractThe RD52 dual-readout calorimeter is a longitudinally unsegmented instrument intended for th...
Simultaneous detection of the Čerenkov light and scintillation light produced in hadron showers make...
AbstractThe RD52 calorimeter uses the dual-readout principle to detect both electromagnetic and hadr...
T2K is an o axis neutrino beam experiment with a baseline of 295 km to the far detector, Super-Kamio...
The RD52 Project at CERN is a pure instrumentation experiment whose goal is to un-derstand the funda...
Prototypes of electromagnetic and hadronic imaging calorimeters developed and operated by the CALICE...
The RD52 calorimeter uses the dual-readout principle to detect both electromagnetic and hadronic sho...
AbstractThe RD52 calorimeter is an instrument intended to detect both electromagnetic and hadronic s...
Dual-readout calorimetry is a calorimetric technique able to overcome the noncompensation limit by s...
The RD52 calorimeter is an instrument intended to detect both electromagnetic and hadronic showers, ...
The aim of this document is to explain the shower phenomenon and shower detection. The development o...
Abstract. The CALICE collaboration has constructed highly granular electromagnetic and hadronic calo...
CERN Summer Student Report: Highly granular hadronic calorimeters optimized for the Particle Flow Pa...
We present an approach to derive longitudinal shower development information from the longitudinally...
A particle identification method is presented, in which calculations of AE energy losses are stored ...
AbstractThe RD52 dual-readout calorimeter is a longitudinally unsegmented instrument intended for th...
Simultaneous detection of the Čerenkov light and scintillation light produced in hadron showers make...
AbstractThe RD52 calorimeter uses the dual-readout principle to detect both electromagnetic and hadr...
T2K is an o axis neutrino beam experiment with a baseline of 295 km to the far detector, Super-Kamio...
The RD52 Project at CERN is a pure instrumentation experiment whose goal is to un-derstand the funda...
Prototypes of electromagnetic and hadronic imaging calorimeters developed and operated by the CALICE...
The RD52 calorimeter uses the dual-readout principle to detect both electromagnetic and hadronic sho...
AbstractThe RD52 calorimeter is an instrument intended to detect both electromagnetic and hadronic s...
Dual-readout calorimetry is a calorimetric technique able to overcome the noncompensation limit by s...
The RD52 calorimeter is an instrument intended to detect both electromagnetic and hadronic showers, ...
The aim of this document is to explain the shower phenomenon and shower detection. The development o...
Abstract. The CALICE collaboration has constructed highly granular electromagnetic and hadronic calo...
CERN Summer Student Report: Highly granular hadronic calorimeters optimized for the Particle Flow Pa...
We present an approach to derive longitudinal shower development information from the longitudinally...
A particle identification method is presented, in which calculations of AE energy losses are stored ...