A time-of-flight system based on 46 multigap glass resistive plate chambers has operated for 2 years in the HARP experiment at the CERN PS. The system covers an area of 10m**2 and comprises 368 readout, channels. Systematic checks of the RFC performance are presented as well as preliminary results on its particle identification capabilities
The HARP system of resistive plate chambers (RPCs) was designed to perform particle identification b...
In this project a Time-of-Flight detector based on multi-gap resistive plate chambers was built and ...
TORCH is a novel time-of-flight detector, designed to provide charged particle identification of pio...
A time-of-flight system based on 46 multigap glass resistive plate chambers has operated for 2 years...
The construction and performance of a large area scintillator-based time-of-flight detector for the ...
The HARP Resistive Plate Chamber (RPC) system was designed for time-of-flight measurement in the lar...
The construction and performance of a large area scintillator-based time-of-flight detector for the ...
The construction and performance of a large area scintillator-based time-of-flight detector for the ...
HARP is a high-statistics, large solid angle experiment to measure hadron production using proton an...
The HARP spectrometer that took data at the CERN Proton Synchrotron in 2001 and 2002 had as large-an...
The HARP system of resistive plate chambers (RPCs) was designed to perform particle identification b...
The HARP system of resistive plate chambers (RPCs) was designed to perform particle identification b...
The application of multi-gap resistive plate chambers (MRPC) for time-of-flight (TOF)measurements in...
The HARP spectrometer that took data at the CERN Proton Synchrotron in 2001 and 2002 had as large-an...
The goal of this R&D has been to reach the time resolution needed for time-of-flight detectors using...
The HARP system of resistive plate chambers (RPCs) was designed to perform particle identification b...
In this project a Time-of-Flight detector based on multi-gap resistive plate chambers was built and ...
TORCH is a novel time-of-flight detector, designed to provide charged particle identification of pio...
A time-of-flight system based on 46 multigap glass resistive plate chambers has operated for 2 years...
The construction and performance of a large area scintillator-based time-of-flight detector for the ...
The HARP Resistive Plate Chamber (RPC) system was designed for time-of-flight measurement in the lar...
The construction and performance of a large area scintillator-based time-of-flight detector for the ...
The construction and performance of a large area scintillator-based time-of-flight detector for the ...
HARP is a high-statistics, large solid angle experiment to measure hadron production using proton an...
The HARP spectrometer that took data at the CERN Proton Synchrotron in 2001 and 2002 had as large-an...
The HARP system of resistive plate chambers (RPCs) was designed to perform particle identification b...
The HARP system of resistive plate chambers (RPCs) was designed to perform particle identification b...
The application of multi-gap resistive plate chambers (MRPC) for time-of-flight (TOF)measurements in...
The HARP spectrometer that took data at the CERN Proton Synchrotron in 2001 and 2002 had as large-an...
The goal of this R&D has been to reach the time resolution needed for time-of-flight detectors using...
The HARP system of resistive plate chambers (RPCs) was designed to perform particle identification b...
In this project a Time-of-Flight detector based on multi-gap resistive plate chambers was built and ...
TORCH is a novel time-of-flight detector, designed to provide charged particle identification of pio...