Low Gain Avalanche Diodes (LGADs) is one of the candidate sensing technologies for future 4D-tracking applications and recently have been qualified to be used in the ATLAS and CMS timing detectors for the CERN High Luminosity Large Hadron Collider upgrade. LGADs can achieve an excellent timing performance by the presence of an internal gain that improves the signal-to-noise ratio leading to a better time resolution. These detectors are designed to exhibit a moderate gain with an increase of the reverse bias voltage. The value of the gain strongly depends on the temperature. Thus, these two values must be kept under control in the experiments to maintain the gain within the required values. A reduction in the reverse bias or an increase in t...
This paper describes the new concept of the double LGAD (low-gain avalanche diodes). The goal was to...
AbstractThis paper reports the latest technological development on the Low Gain Avalanche Detector (...
Low Gain Avalanche Detector (LGAD) is the baseline sensing technology of the recently proposed Minim...
To cope up with high pile-up rates during Phase-2 operation of the LHC, the CMS experiment will inst...
This article belongs to the Section Physical Sensors.Gain suppression induced by excess carriers in ...
The low gain avalanche detectors (LGADs) are thin sensors with fast charge collection which in combi...
The High Luminosity upgrade of the Large Hadron Collider highlighted the need for a time-tagging of ...
Silicon detectors with intrinsic charge amplification implementing a n-p-p structure are considered ...
In this contribution, we present an innovative design of the Low-Gain Avalanche Diode (LGAD) gain la...
This paper reports the latest technological development on the Low Gain Avalanche Detector (LGAD) an...
This paper presents the possibility of using very thin Low Gain Avalanche Diodes (LGAD) (25−50μm thi...
Proceeding of the 10th International “Hiroshima” Symposium on the Development and Application of Sem...
The high-luminosity upgrade of the ATLAS and CMS experiments includes dedicated sub-detectors to per...
Silicon sensors with a built-in multiplication layer, also known as Low Gain Avalanche Detectors (LG...
A new avalanche silicon detector concept is introduced with a low gain in the region of ten, known a...
This paper describes the new concept of the double LGAD (low-gain avalanche diodes). The goal was to...
AbstractThis paper reports the latest technological development on the Low Gain Avalanche Detector (...
Low Gain Avalanche Detector (LGAD) is the baseline sensing technology of the recently proposed Minim...
To cope up with high pile-up rates during Phase-2 operation of the LHC, the CMS experiment will inst...
This article belongs to the Section Physical Sensors.Gain suppression induced by excess carriers in ...
The low gain avalanche detectors (LGADs) are thin sensors with fast charge collection which in combi...
The High Luminosity upgrade of the Large Hadron Collider highlighted the need for a time-tagging of ...
Silicon detectors with intrinsic charge amplification implementing a n-p-p structure are considered ...
In this contribution, we present an innovative design of the Low-Gain Avalanche Diode (LGAD) gain la...
This paper reports the latest technological development on the Low Gain Avalanche Detector (LGAD) an...
This paper presents the possibility of using very thin Low Gain Avalanche Diodes (LGAD) (25−50μm thi...
Proceeding of the 10th International “Hiroshima” Symposium on the Development and Application of Sem...
The high-luminosity upgrade of the ATLAS and CMS experiments includes dedicated sub-detectors to per...
Silicon sensors with a built-in multiplication layer, also known as Low Gain Avalanche Detectors (LG...
A new avalanche silicon detector concept is introduced with a low gain in the region of ten, known a...
This paper describes the new concept of the double LGAD (low-gain avalanche diodes). The goal was to...
AbstractThis paper reports the latest technological development on the Low Gain Avalanche Detector (...
Low Gain Avalanche Detector (LGAD) is the baseline sensing technology of the recently proposed Minim...