In this contribution I will review the state-of-the-art and developments of the Ultra-Fast Silicon Detectors (UFSD) project, designed to provide accurate particle tracking in both space and time. Working principles, technology, measurements and TCAD (Technology Computer-Aided Design) simulations of Low-Gain Avalanche Detectors (LGAD) are described, highlighting the advantages of having large output signal without high-gain regimes as in standard APD structures, where also noise is typically enhanced
In the past few years, the need of measuring accurately the spatial and temporal coordinates of the ...
The past ten years have seen the advent of silicon-based precise timing detectors for charged partic...
The book describes the development of innovative silicon sensors known as ultra-fast silicon detecto...
Ultra-Fast Silicon Detectors (UFSD) are thin silicon detectors, based on the Low-Gain Avalanche Diod...
In this contribution we review the progress towards the development of a novel type of silicon detec...
Abstract We propose to develop a fast, thin silicon sensor with gain capable to concurrently measu...
The Ultra Fast Silicon Detectors (UFSDs) are a new kind of silicon detectors based on Low Gain Avala...
Abstract We report on measurements on Ultra-Fast Silicon Detectors (UFSD) which are based on Low-G...
Segmented silicon sensors with internal gain, the so called Ultra-FAST Silicon Detectors (UFSD), hav...
In this contribution we review the progress towards the development of a novel type of silicon detec...
Low-Gain Avalanche Diodes (LGAD) are silicon detectors with output signals that are about a factor o...
The recent development in the design of Ultra Fast Silicon Detector (UFSD), aimed at combining radia...
In this paper we report on the timing resolution obtained in a beam test with pions of 180 GeV/c mom...
The MIUR PRIN 4DInSiDe collaboration aims at developing the next generation of 4D (i.e., position an...
In the past few years, there has been growing interest in the development of silicon sensors able to...
In the past few years, the need of measuring accurately the spatial and temporal coordinates of the ...
The past ten years have seen the advent of silicon-based precise timing detectors for charged partic...
The book describes the development of innovative silicon sensors known as ultra-fast silicon detecto...
Ultra-Fast Silicon Detectors (UFSD) are thin silicon detectors, based on the Low-Gain Avalanche Diod...
In this contribution we review the progress towards the development of a novel type of silicon detec...
Abstract We propose to develop a fast, thin silicon sensor with gain capable to concurrently measu...
The Ultra Fast Silicon Detectors (UFSDs) are a new kind of silicon detectors based on Low Gain Avala...
Abstract We report on measurements on Ultra-Fast Silicon Detectors (UFSD) which are based on Low-G...
Segmented silicon sensors with internal gain, the so called Ultra-FAST Silicon Detectors (UFSD), hav...
In this contribution we review the progress towards the development of a novel type of silicon detec...
Low-Gain Avalanche Diodes (LGAD) are silicon detectors with output signals that are about a factor o...
The recent development in the design of Ultra Fast Silicon Detector (UFSD), aimed at combining radia...
In this paper we report on the timing resolution obtained in a beam test with pions of 180 GeV/c mom...
The MIUR PRIN 4DInSiDe collaboration aims at developing the next generation of 4D (i.e., position an...
In the past few years, there has been growing interest in the development of silicon sensors able to...
In the past few years, the need of measuring accurately the spatial and temporal coordinates of the ...
The past ten years have seen the advent of silicon-based precise timing detectors for charged partic...
The book describes the development of innovative silicon sensors known as ultra-fast silicon detecto...