The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design for a revolutionary hybrid photodetector. The idea, born with the purpose to use a SiPM for large detection volumes, consists in replacing the classical dynode chain with a SiPM. In this configuration, we match the large sensitive area of a photocathode with the performances of the SiPM technology, which therefore acts like an electron detector and so like a current amplifier. The excellent photon counting capability, fast response, low power consumption and great stability are among the most attractive features of the VSiPMT. In order to realize such a device we first studied the feasibility of this detector both from theoretical and experimental point of view, by imp...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an original design for an innovative light detec...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design we proposed for a revolutio...
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...
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....
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
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...
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 original design for an innovative light detec...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design we proposed for a revolutio...
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...
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....
The Vacuum Silicon PhotoMultiplier Tube (VSiPMT) is an innovative design we propose for a modern hyb...
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...
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 original design for an innovative light detec...
The VSiPMT (Vacuum Silicon PhotoMultiplier Tube) is an innovative design we proposed for a revolutio...
Photon detection is a key factor to study many physical processes in several areas of fundamental ph...