AbstractThe search for alternatives to PMTs as photosensors in optical TPCs for rare event detection has significantly increased in the last few years. In particular, in view of the next generation large volume detectors, the use of photosensors with lower natural radioactivity, such as large area APDs or GM-APDs, with the additional possibility of sparse surface coverage, triggered the intense study of secondary scintillation production in micropattern electron multipliers, such as GEMs and THGEMs, as alternatives to the commonly used uniform electric field region between two parallel meshes. The much higher scintillation output obtained from the electron avalanches in such microstructures presents an advantage in those situations. The acc...
The frontier of experimental particle physics research, especially astroparticle physics, frequently...
Xe–CO 2 mixtures are important alternatives to pure xenon in Time Projection Chambers (TPC) based on...
AbstractIntroduced by the author in 1997, The Gas Electron Multiplier (GEM) constitutes a powerful a...
AbstractThe search for alternatives to PMTs as photosensors in optical TPCs for rare event detection...
AbstractThe secondary scintillation yield is of great importance for simulating double phase detecto...
The use of the scintillation produced in the charge avalanches in GEM holes as signal amplification ...
The xenon secondary scintillation yield was studied as a function of the electric field in the scint...
A new concept for the simultaneous detection of primary and secondary scintillation in time projecti...
We present an overview of results from our recent studies on the use of the visible and NIR scintill...
We describe the development and operation of the Gas Electron Multiplier, a thin insulating foil met...
The detection of primary scintillation light in combination with the charge or secondary scintillati...
The Gas Electron Multiplier (GEM), introduced several years ago, is finding numerous applications th...
Xe–CO2 mixtures are important alternatives to pure xenon in Time Projection Chambers (TPC) based on ...
AbstractThe secondary scintillation yield is of great importance for simulating double phase detecto...
Xe–CO2 mixtures are important alternatives to pure xenon in Time Projection Chambers (TPC) based on ...
The frontier of experimental particle physics research, especially astroparticle physics, frequently...
Xe–CO 2 mixtures are important alternatives to pure xenon in Time Projection Chambers (TPC) based on...
AbstractIntroduced by the author in 1997, The Gas Electron Multiplier (GEM) constitutes a powerful a...
AbstractThe search for alternatives to PMTs as photosensors in optical TPCs for rare event detection...
AbstractThe secondary scintillation yield is of great importance for simulating double phase detecto...
The use of the scintillation produced in the charge avalanches in GEM holes as signal amplification ...
The xenon secondary scintillation yield was studied as a function of the electric field in the scint...
A new concept for the simultaneous detection of primary and secondary scintillation in time projecti...
We present an overview of results from our recent studies on the use of the visible and NIR scintill...
We describe the development and operation of the Gas Electron Multiplier, a thin insulating foil met...
The detection of primary scintillation light in combination with the charge or secondary scintillati...
The Gas Electron Multiplier (GEM), introduced several years ago, is finding numerous applications th...
Xe–CO2 mixtures are important alternatives to pure xenon in Time Projection Chambers (TPC) based on ...
AbstractThe secondary scintillation yield is of great importance for simulating double phase detecto...
Xe–CO2 mixtures are important alternatives to pure xenon in Time Projection Chambers (TPC) based on ...
The frontier of experimental particle physics research, especially astroparticle physics, frequently...
Xe–CO 2 mixtures are important alternatives to pure xenon in Time Projection Chambers (TPC) based on...
AbstractIntroduced by the author in 1997, The Gas Electron Multiplier (GEM) constitutes a powerful a...