We report on the signal timing capabilities of thin silicon sensors when traversed by multiple simultaneous minimum ionizing particles (MIP). Three different planar sensors, with depletion thicknesses 133, 211, and 285 µm, have been exposed to high energy muons and electrons at CERN. We describe signal shape and timing resolution measurements as well as the response of these devices as a function of the multiplicity of MIPs. We compare these measurements to simulations where possible. We achieve better than 20 ps timing resolution for signals larger than a few tens of MIPs.Open Access funded by CERN.Peer Reviewe
The Silicon Electron Multiplier (SiEM) is a novel sensor concept for minimum ionizing particle (MIP)...
CMS MTD collaboration: et al.The MIP Timing Detector will provide additional timing capabilities for...
In this contribution we review the progress towards the development of a novel type of silicon detec...
We report on the signal timing capabilities of thin silicon sensors when traversed by multiple simul...
We report on the signal timing capabilities of thin silicon sensors when traversed by multiple simul...
The next generation of experiments at colliders demands detectors with extreme performance in terms ...
In this paper the results of a beam test characterization campaign of 3D trench silicon pixel sensor...
The high luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN is expected to provide ins...
This paper describes the performance of a prototype timing detector, based on 50 mu m thick Ultra Fa...
The high luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN is expected to provide ins...
In this paper we report on the timing resolution obtained in a beam test with pions of 180 GeV/c mom...
Abstract We propose to develop a fast, thin silicon sensor with gain capable to concurrently measu...
In the last years, high-resolution time tagging has emerged as the tool to tackle the problem of hig...
The planned luminosity increase at the Large Hadron Collider in the coming years has triggered inter...
In this thesis work the results of the characterizations of the 3D-trench TimeSPOT silicon sensors w...
The Silicon Electron Multiplier (SiEM) is a novel sensor concept for minimum ionizing particle (MIP)...
CMS MTD collaboration: et al.The MIP Timing Detector will provide additional timing capabilities for...
In this contribution we review the progress towards the development of a novel type of silicon detec...
We report on the signal timing capabilities of thin silicon sensors when traversed by multiple simul...
We report on the signal timing capabilities of thin silicon sensors when traversed by multiple simul...
The next generation of experiments at colliders demands detectors with extreme performance in terms ...
In this paper the results of a beam test characterization campaign of 3D trench silicon pixel sensor...
The high luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN is expected to provide ins...
This paper describes the performance of a prototype timing detector, based on 50 mu m thick Ultra Fa...
The high luminosity upgrade of the Large Hadron Collider (HL-LHC) at CERN is expected to provide ins...
In this paper we report on the timing resolution obtained in a beam test with pions of 180 GeV/c mom...
Abstract We propose to develop a fast, thin silicon sensor with gain capable to concurrently measu...
In the last years, high-resolution time tagging has emerged as the tool to tackle the problem of hig...
The planned luminosity increase at the Large Hadron Collider in the coming years has triggered inter...
In this thesis work the results of the characterizations of the 3D-trench TimeSPOT silicon sensors w...
The Silicon Electron Multiplier (SiEM) is a novel sensor concept for minimum ionizing particle (MIP)...
CMS MTD collaboration: et al.The MIP Timing Detector will provide additional timing capabilities for...
In this contribution we review the progress towards the development of a novel type of silicon detec...