arXiv · 2207.06047
First Results for the pLGAD Sensor for Low-Penetrating Particles
Abstract
Silicon sensors are the go-to technology for high-precision sensors in particle physics. But only recently low-noise silicon sensors with internal amplification became available. The so-called Low Gain Avalanche Detector (LGAD) sensors have been developed for applications in High Energy Physics, but lack two characteristics needed for the measurement of low-energy protons (<60 keV): a thin entrance window (in the order of tens of nm) and the efficient amplification of signals created near the sensor's surface (in a depth below 1 um). In this paper we present the so-called proton Low Gain Avalanche Detector (pLGAD) sensor concept and some results from characterization of the first prototypes of the sensor. The pLGAD is specifically designed to detect low-energy protons, and other low-penetrating particles. It will have a higher detection efficiency than non-silicon technologies, and promises to be a lot cheaper and easier to operate than competing silicon technologies.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Waleed Khalid, Manfred Valentan, Albert Doblas, David Flores, Salvador Hidalgo, Gertrud Konrad, Johann Marton, Neil Moffat, Daniel Moser, Sebastian Onder, Giulio Pellegrini, Jairo Villegas. 2022-07-19. First Results for the pLGAD Sensor for Low-Penetrating Particles. https://doi.org/10.1016/j.nima.2022.167220
Cite the original work for its findings. Save a collection to share your selection of sources.