VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a modern hybrid, high gain, silicon based photodetector based on the combination of a SiPM with a hemispherical vacuum glass PMT standard envelope. In such a device photoelectrons emitted by the photocathode are accelerated and focused by an electric field towards a small focal area covered by the SiPM which therefore acts as an amplifier, thus substituting the classical dynode chain of a PMT. With a view to the realization of a first prototype of VSiPMT our group is carrying out a preliminary work aimed at the study of SiPM performances as an electron detector, including an accurate Geant4-based simulation of the interaction between SiPM and electron beams. In order t...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a hybrid photodetector....
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...
VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a modern hybrid, high gain,...
VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a modern hybrid, high gain,...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a revolutionary hybrid ...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a revolutionary hybrid ...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a revolutionary hybrid ...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a hybrid photodetector....
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a hybrid photodetector....
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a hybrid photodetector....
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...
VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a modern hybrid, high gain,...
VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a modern hybrid, high gain,...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a revolutionary hybrid ...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a revolutionary hybrid ...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a revolutionary hybrid ...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a hybrid photodetector....
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a hybrid photodetector....
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a hybrid photodetector....
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...