We present test beam studies and results on the timing performance and characterization of the time resolution of Lutetium–Yttrium Orthosilicate (LYSO)-based calorimeters. We demonstrate that a time resolution of 30 ps is achievable for a particular design. Furthermore, we discuss precision timing calorimetry as a tool for the mitigation of physics object performance degradation effects due to the large number of simultaneous interactions in the high luminosity environment foreseen at the Large Hadron Collider
to deal with degradation of tracking and calorimetry up to the radiation doses to be expected with a...
In this White Paper for the 2021 Snowmass process, we discuss aspects of precision timing within ele...
The existing CMS endcap calorimeters will be replaced with a High Granularity Calorimeter (HGCAL) fo...
We present test beam studies and results on the timing performance and characterization of the time ...
We present studies on the performance and characterization of the time resolution of LYSO-based calo...
In this report we outline the study of the development of calorimeter detectors using bright scintil...
a b s t r a c t Particle colliders operating at high luminosities present challenging environments f...
Current and future high energy physics particle colliders are capable to provide instantaneous lumin...
Current and future high energy physics particle colliders are capable to provide instantaneous lumin...
Scintillator based calorimeter technology is studied with the aim to achieve particle detection with...
Particle detectors based on scintillation light are particularly well suited for precision timing ap...
In this paper we present the time resolution measurements of the Lutetium–Yttrium Oxyorthosilicate (...
The state-of-the-art research at the intensity frontier of particle physics aims to find evidence fo...
In this paper, we present measurements of the energy and the time resolution of the Lutetium-Yttrium...
The high luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN is expected to provide ins...
to deal with degradation of tracking and calorimetry up to the radiation doses to be expected with a...
In this White Paper for the 2021 Snowmass process, we discuss aspects of precision timing within ele...
The existing CMS endcap calorimeters will be replaced with a High Granularity Calorimeter (HGCAL) fo...
We present test beam studies and results on the timing performance and characterization of the time ...
We present studies on the performance and characterization of the time resolution of LYSO-based calo...
In this report we outline the study of the development of calorimeter detectors using bright scintil...
a b s t r a c t Particle colliders operating at high luminosities present challenging environments f...
Current and future high energy physics particle colliders are capable to provide instantaneous lumin...
Current and future high energy physics particle colliders are capable to provide instantaneous lumin...
Scintillator based calorimeter technology is studied with the aim to achieve particle detection with...
Particle detectors based on scintillation light are particularly well suited for precision timing ap...
In this paper we present the time resolution measurements of the Lutetium–Yttrium Oxyorthosilicate (...
The state-of-the-art research at the intensity frontier of particle physics aims to find evidence fo...
In this paper, we present measurements of the energy and the time resolution of the Lutetium-Yttrium...
The high luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN is expected to provide ins...
to deal with degradation of tracking and calorimetry up to the radiation doses to be expected with a...
In this White Paper for the 2021 Snowmass process, we discuss aspects of precision timing within ele...
The existing CMS endcap calorimeters will be replaced with a High Granularity Calorimeter (HGCAL) fo...