ABSTRACT: A simple X-ray imaging system using off-the-shelf electronics and simple reconstruc-tion algorithms aiming a spatial resolution of 1.7 mm ( ∼ 3 % of the detector length) is described in this work. For this, two 100 cm2 Gas Electron Multiplier (GEM) foils with a thickness of 100 µm (2-fold thicker than the standard ones) were immersed in a mixture of argon and carbon dioxide (70:30). The charge readout with 2D position determination was done with resistive charge divi-sion. Due to their higher thickness with respect to the standard GEMs, the 100 µm thick GEM foils were found to be less prone to damage caused by the electrical discharges. X-ray images are shown and some descriptions of the physical processes involved are presented. ...
We have developed a Glass Gas Electron Multiplier (Glass GEM, G-GEM), which is composed of two coppe...
A large size x-ray imaging gaseous detector, which has 280 × 280 mm2 effective area has been success...
A large size x-ray imaging gaseous detector, which has 280 × 280 mm2 effective area has been success...
The Gas Electron Multiplier (GEM) Detector is being used extensively to handle a fairly large flux e...
The Gas Electron Multiplier (GEM) Detector is being used extensively to handle a fairly large flux e...
The Gas Electron Multiplier (GEM) Detector is being used extensively to handle a fairly large flux e...
The Gas Electron Multiplier (GEM) Detector is being used extensively to handle a fairly large flux e...
The Gas Electron Multiplier (GEM), introduced several years ago, is finding numerous applications th...
Modern imaging sensors allow for high granularity optical readout of radiation detectors such as Mic...
A detecting system based on the Gas Electron Multiplier (GEM) technology is considered for tokamak p...
A detecting system based on the Gas Electron Multiplier (GEM) technology is considered for tokamak p...
A detecting system based on the Gas Electron Multiplier (GEM) technology is considered for tokamak p...
The recently introduced Gas Electron Multiplier (GEM) permits the amplification of electrons release...
The Gas Electron Multiplier (GEM) is a robust and ubiquitous device for the proportional amplificati...
We have developed a Glass Gas Electron Multiplier (Glass GEM, G-GEM), which is composed of two coppe...
We have developed a Glass Gas Electron Multiplier (Glass GEM, G-GEM), which is composed of two coppe...
A large size x-ray imaging gaseous detector, which has 280 × 280 mm2 effective area has been success...
A large size x-ray imaging gaseous detector, which has 280 × 280 mm2 effective area has been success...
The Gas Electron Multiplier (GEM) Detector is being used extensively to handle a fairly large flux e...
The Gas Electron Multiplier (GEM) Detector is being used extensively to handle a fairly large flux e...
The Gas Electron Multiplier (GEM) Detector is being used extensively to handle a fairly large flux e...
The Gas Electron Multiplier (GEM) Detector is being used extensively to handle a fairly large flux e...
The Gas Electron Multiplier (GEM), introduced several years ago, is finding numerous applications th...
Modern imaging sensors allow for high granularity optical readout of radiation detectors such as Mic...
A detecting system based on the Gas Electron Multiplier (GEM) technology is considered for tokamak p...
A detecting system based on the Gas Electron Multiplier (GEM) technology is considered for tokamak p...
A detecting system based on the Gas Electron Multiplier (GEM) technology is considered for tokamak p...
The recently introduced Gas Electron Multiplier (GEM) permits the amplification of electrons release...
The Gas Electron Multiplier (GEM) is a robust and ubiquitous device for the proportional amplificati...
We have developed a Glass Gas Electron Multiplier (Glass GEM, G-GEM), which is composed of two coppe...
We have developed a Glass Gas Electron Multiplier (Glass GEM, G-GEM), which is composed of two coppe...
A large size x-ray imaging gaseous detector, which has 280 × 280 mm2 effective area has been success...
A large size x-ray imaging gaseous detector, which has 280 × 280 mm2 effective area has been success...