In the framework of the development of future advanced treatment modalities in charged particle therapy, the use of silicon sensors is an appealing alternative to gas ionization chambers commonly used for beam monitoring. A prototype of a device, based on Low-Gain Avalanche Diode (LGAD) sensors with thickness, is being developed to discriminate and count single beam particles. This paper describes the design and characterization of ABACUS, an innovative multi-channel ASIC prototype for LGAD readout, based on a fast amplifier with self-reset capabilities. The design goals aim at detecting charge pulses in a wide range, from 4 fC to 150 fC, up to 70 MHz instantaneous rates, with a dead time of about 10 ns or less and efficiency larger than 9...
International audienceFor the High-Luminosity phase of LHC, the ATLAS experiment is proposing the ad...
In high energy physics, silicon particles detectors are widely used in tracking applications. They f...
The ability to detect single photons is becoming an enabling key capability in an increasing number ...
The medical physics group of the Turin section of the National Institute of Nuclear Physics, on the ...
The Move-IT research project of the National Institute for Nuclear Physics aims at the study of mode...
The University and the National Institute for Nuclear Physics of Torino are developing LGAD-based pr...
A proton counter prototype based on Low Gain Avalanche Detector (LGAD) technology is being developed...
To fully exploit the physics potentials of particle therapy in delivering dose with high accuracy an...
To fully exploit the physics potentials of particle therapy in delivering dose with high accuracy an...
A prototype of proton counter was developed by the University and the National Institute for Nuclear...
The High Luminosity upgrade of the Large Hadron Collider highlighted the need for a time-tagging of ...
International audienceThe development of detectors that provide high resolution in four dimensions h...
This is the second of two serial papers dealing with single photon avalanche diode (SPAD) topics. Ai...
In high energy physics, silicon particles detectors are widely used in tracking applications. They ...
International audienceThe development of detectors that provide high resolution in four dimensions h...
International audienceFor the High-Luminosity phase of LHC, the ATLAS experiment is proposing the ad...
In high energy physics, silicon particles detectors are widely used in tracking applications. They f...
The ability to detect single photons is becoming an enabling key capability in an increasing number ...
The medical physics group of the Turin section of the National Institute of Nuclear Physics, on the ...
The Move-IT research project of the National Institute for Nuclear Physics aims at the study of mode...
The University and the National Institute for Nuclear Physics of Torino are developing LGAD-based pr...
A proton counter prototype based on Low Gain Avalanche Detector (LGAD) technology is being developed...
To fully exploit the physics potentials of particle therapy in delivering dose with high accuracy an...
To fully exploit the physics potentials of particle therapy in delivering dose with high accuracy an...
A prototype of proton counter was developed by the University and the National Institute for Nuclear...
The High Luminosity upgrade of the Large Hadron Collider highlighted the need for a time-tagging of ...
International audienceThe development of detectors that provide high resolution in four dimensions h...
This is the second of two serial papers dealing with single photon avalanche diode (SPAD) topics. Ai...
In high energy physics, silicon particles detectors are widely used in tracking applications. They ...
International audienceThe development of detectors that provide high resolution in four dimensions h...
International audienceFor the High-Luminosity phase of LHC, the ATLAS experiment is proposing the ad...
In high energy physics, silicon particles detectors are widely used in tracking applications. They f...
The ability to detect single photons is becoming an enabling key capability in an increasing number ...