The harsh radiation environment in present and future high-energy physics experiments, such as the Large Hadron Collider (LHC), is a driving force for the development of high-voltage Si strip detectors. It is well known that mobile surface ions can affect the stability and long-term behaviour of Si detectors. These instabilities can be nearly eliminated and the performance of Si detectors can be improved by implementing suitably passivated metal-overhang structures. This paper presents the influence of the relative permittivity of the passivant on the breakdown performance of the Si detectors using computer simulations. The semi-insulator and the dielectric- passivated metal-overhang structures are compared under optimal conditions. Influen...
The purpose of this work is to study layout solutionsaimed at increasing the breakdown voltage in si...
Multiguard structures are used in order to enhance the breakdown voltage of microstrip detectors. In...
Within the R&D Program for the luminosity upgrade proposed for the Large Hadron Collider (LHC), sili...
The harsh radiation environment in future high-energy physics (HEP) experiments like LHC provides a ...
The importance of Si sensors in high-energy physics (HEP) experiments can hardly be overemphasized. ...
The performance of metal-overhang (MO) equipped silicon micro-strip sensors, after irradiation for t...
The utility of silicon microstrip detectors in future high luminosity colliders, like LHC requires s...
The purpose of this work is to study layout solutions aimed at increasing the breakdown voltage in s...
The very intense radiation environment of high luminosity future colliding beam experiments (like LH...
The purpose of this work is to study layout solutions aimed at increasing the breakdown voltage in s...
In this paper, a computer-based analysis is performed to study layout solutions aimed at increasing ...
The very high radiation fluences expected at the high-luminosity large hadron collider (LHC) impose ...
Silicon membrane strip photodetectors are fabricated based on thin silicon-on-insulator (SOI) wafers...
The very intense radiation environment of high luminosity future colliding beam experiments (LHC, e...
The very intense radiation environment of high luminosity future colliding beam experiments (LHC, e...
The purpose of this work is to study layout solutionsaimed at increasing the breakdown voltage in si...
Multiguard structures are used in order to enhance the breakdown voltage of microstrip detectors. In...
Within the R&D Program for the luminosity upgrade proposed for the Large Hadron Collider (LHC), sili...
The harsh radiation environment in future high-energy physics (HEP) experiments like LHC provides a ...
The importance of Si sensors in high-energy physics (HEP) experiments can hardly be overemphasized. ...
The performance of metal-overhang (MO) equipped silicon micro-strip sensors, after irradiation for t...
The utility of silicon microstrip detectors in future high luminosity colliders, like LHC requires s...
The purpose of this work is to study layout solutions aimed at increasing the breakdown voltage in s...
The very intense radiation environment of high luminosity future colliding beam experiments (like LH...
The purpose of this work is to study layout solutions aimed at increasing the breakdown voltage in s...
In this paper, a computer-based analysis is performed to study layout solutions aimed at increasing ...
The very high radiation fluences expected at the high-luminosity large hadron collider (LHC) impose ...
Silicon membrane strip photodetectors are fabricated based on thin silicon-on-insulator (SOI) wafers...
The very intense radiation environment of high luminosity future colliding beam experiments (LHC, e...
The very intense radiation environment of high luminosity future colliding beam experiments (LHC, e...
The purpose of this work is to study layout solutionsaimed at increasing the breakdown voltage in si...
Multiguard structures are used in order to enhance the breakdown voltage of microstrip detectors. In...
Within the R&D Program for the luminosity upgrade proposed for the Large Hadron Collider (LHC), sili...