AbstractWe describe a novel gas-Cherenkov calorimeter, which detects Cherenkov light showers emitted in an array of thin metal tubes or channels filled with gas. The materials are not vulnerable to radiation damage, and the detector is inherently fast and able to operate in high rate environments. Future accelerators such as the ILC and a muon collider will need fast, radiation-tolerant detectors for monitoring beams and beam halos, and detectors are needed that can operate in the presence of high particle rates. Such detectors will also be useful for high rate environments at upgraded facilities such as RHIC, CEBAF II, and at Fermilab's Project X
Measurement of physics processes at new energy frontier experiments requires excellent spatial, time...
AbstractWe report on the R&D results for a Very High Momentum Particle Identification (VHMPID) detec...
We show that a multifaceted LiF radiator produces more Cherenkov light and has better resolution per...
AbstractWe describe a novel gas-Cherenkov calorimeter, which detects Cherenkov light showers emitted...
We report on test results of a novel ring imaging Cherenkov (RICH) detection system consisting of a ...
Micromegas is presently in use by many experiments providing enhanced performance when used in high ...
We discuss the design and performance of a threshold Cerenkov counter for identification of charged ...
Widely used in high-energy and particle physics, gaseous radiation detectors are undergoing continuo...
Equipe MicromegasSampling calorimeters can be finely segmented and used to detect showers with high ...
In this paper we simulate the charged particle interaction with complex structures, including the em...
We present the results of beam tests with high-energy (8-375 GeV) electrons, pions, protons and muon...
Zero-degree calorimeters have limited space and extreme levels of radiation. A simple, low cost, rad...
TORCH is an innovative high-precision time-of-flight system to provide particle identification in th...
The direct observation of high-energy cosmic rays, up to the PeV region, will depend on highly perfo...
AbstractThis article aims at reviewing the state of the art of gaseous photon detectors for RICH app...
Measurement of physics processes at new energy frontier experiments requires excellent spatial, time...
AbstractWe report on the R&D results for a Very High Momentum Particle Identification (VHMPID) detec...
We show that a multifaceted LiF radiator produces more Cherenkov light and has better resolution per...
AbstractWe describe a novel gas-Cherenkov calorimeter, which detects Cherenkov light showers emitted...
We report on test results of a novel ring imaging Cherenkov (RICH) detection system consisting of a ...
Micromegas is presently in use by many experiments providing enhanced performance when used in high ...
We discuss the design and performance of a threshold Cerenkov counter for identification of charged ...
Widely used in high-energy and particle physics, gaseous radiation detectors are undergoing continuo...
Equipe MicromegasSampling calorimeters can be finely segmented and used to detect showers with high ...
In this paper we simulate the charged particle interaction with complex structures, including the em...
We present the results of beam tests with high-energy (8-375 GeV) electrons, pions, protons and muon...
Zero-degree calorimeters have limited space and extreme levels of radiation. A simple, low cost, rad...
TORCH is an innovative high-precision time-of-flight system to provide particle identification in th...
The direct observation of high-energy cosmic rays, up to the PeV region, will depend on highly perfo...
AbstractThis article aims at reviewing the state of the art of gaseous photon detectors for RICH app...
Measurement of physics processes at new energy frontier experiments requires excellent spatial, time...
AbstractWe report on the R&D results for a Very High Momentum Particle Identification (VHMPID) detec...
We show that a multifaceted LiF radiator produces more Cherenkov light and has better resolution per...