The first results of a study on the properties of a gaseous scintillation detector based on a Gas Electron Multiplier (GEM) are reported. The detector is designed for use in position-sensitive dosimetry applications in radiation therapy. A double GEM system, operating in a 90 10% Ar-CO2 gas mixture at a gas amplification factor of similar to 3000, emits a sufficient amount of detectable light to perform measurements of similar to 1 Gy doses in two dimensions. The light yield does not suffer from quenching processes when particles with high stopping power are detected. This operation mode of GEMs offers the dosimetric advantages of a gas-filled detector and the 2D read-out can be performed with a CCD camera. Compared to the existing dosimete...
AbstractIntroduced by the author in 1997, The Gas Electron Multiplier (GEM) constitutes a powerful a...
The Gas Electron Multiplier (GEM) amplifies electrons released in a gas and transfers them to a seco...
From its invention in 1997, the Gas Electron Multiplier has been applied in nuclear and high energy ...
The first results of a study on the properties of a gaseous scintillation detector based on a Gas El...
The first results of a study on the properties of a gaseous scintillation detector based on a Gas El...
The first results of a study on the properties of a gaseous scintillation detector based on a Gas El...
The first results of a study on the properties of a gaseous scintillation detector based on a Gas El...
The main aim of radiotherapy techniques is to deliver the dose to the target volume while sparing as...
The main aim of radiotherapy techniques is to deliver the dose to the target volume while sparing as...
A two-dimensional position-sensitive dosimetry system based on a scintillating gas detector is being...
A two-dimensional position-sensitive dosimetry system based on a scintillating gas detector is being...
The Gas Electron Multiplier (GEM) is a robust and ubiquitous device for the proportional amplificati...
The Gas Electron Multiplier (GEM) is a robust and ubiquitous device for the proportional amplificati...
Although the GEM has been mainly used as a gaseous preamplifier device, it has been shown that using...
Introduced by the author in 1997, The Gas Electron Multiplier (GEM) constitutes a powerful addition ...
AbstractIntroduced by the author in 1997, The Gas Electron Multiplier (GEM) constitutes a powerful a...
The Gas Electron Multiplier (GEM) amplifies electrons released in a gas and transfers them to a seco...
From its invention in 1997, the Gas Electron Multiplier has been applied in nuclear and high energy ...
The first results of a study on the properties of a gaseous scintillation detector based on a Gas El...
The first results of a study on the properties of a gaseous scintillation detector based on a Gas El...
The first results of a study on the properties of a gaseous scintillation detector based on a Gas El...
The first results of a study on the properties of a gaseous scintillation detector based on a Gas El...
The main aim of radiotherapy techniques is to deliver the dose to the target volume while sparing as...
The main aim of radiotherapy techniques is to deliver the dose to the target volume while sparing as...
A two-dimensional position-sensitive dosimetry system based on a scintillating gas detector is being...
A two-dimensional position-sensitive dosimetry system based on a scintillating gas detector is being...
The Gas Electron Multiplier (GEM) is a robust and ubiquitous device for the proportional amplificati...
The Gas Electron Multiplier (GEM) is a robust and ubiquitous device for the proportional amplificati...
Although the GEM has been mainly used as a gaseous preamplifier device, it has been shown that using...
Introduced by the author in 1997, The Gas Electron Multiplier (GEM) constitutes a powerful addition ...
AbstractIntroduced by the author in 1997, The Gas Electron Multiplier (GEM) constitutes a powerful a...
The Gas Electron Multiplier (GEM) amplifies electrons released in a gas and transfers them to a seco...
From its invention in 1997, the Gas Electron Multiplier has been applied in nuclear and high energy ...