Advances in imaging THGEM-based detectors
M. Cortesi, R. Chechik, A. Breskin, G. Guedes, V. Dangendorf, D. Vartzky, D. Bar
Abstract
The thick GEM (THGEM) [1] is an "expanded" GEM, economically produced in the PCB industry by simple drilling and etching in G-10 or other insulating materials (fig. 1). Similar to GEM, its operation is based on electron gas avalanche multiplication in sub-mm holes, resulting in very high gain and fast signals. Due to its large hole size, the THGEM is particularly efficient in transporting the electrons into and from the holes, leading to efficient single-electron detection and effective cascaded operation. The THGEM provides true pixilated radiation localization, ns signals, high gain and high rate capability. For a comprehensive summary of the THGEM properties, the reader is referred to [2, 3]. In this article we present a summary of our recent study on THGEM-based imaging, carried out with a 10x10 cm2 double-THGEM detector.
Create a lesson
Related papers
Constrained estimation of rotational invariants of the cumulant expansion (RICE) for rapid tensor-valued diffusion MRI
Jinyang Yu, Oliver Gödicke, Frederik B. Laun et al.
Dose-PlanNet: Physics Based Radiotherapy Dose Prediction with Deep Learning
Ankit Bhattacharjee, Sougata Maity, Santam Chakraborty et al.
Sparse Delta Integration method for the calculation of spatiotemporal pressure fields of arbitrary ultrasound transducer geometries
Deyver E. Rivera, Charlie Demene, Mickael Tanter
Adapting the TG-43 formalism for use in Diffusing alpha-emitters Radiation Therapy
Guy Heger, Lior Epstein, Lior Arazi
Evaluation of the Exradin A30 Parallel Plate Ion Chamber as a Reference Dosimeter in Ultra-High Dose Rate (UHDR) Electron Beams
Mervat Alharbi, Kevin Liu, Brian Hooten et al.
Clustering of anterior corneal surface shapes in normal adults
Hala Bouazizi, Isabelle Brunette, Jean Meunier