The main objective of this contribution is to point out the potentialities of cerium doped LuAG single crystal as pixels and fibers. We first show that after optimization of growth conditions using Bridgman technology, this composition exhibits very good performances for scintillating applications (up to 26 000 photons/MeV). When grown with the micropulling down technology, fiber shapes can be obtained while the intrinsic performances are preserved. For the future high energy experiments requiring new detector concepts capable of delivering much richer informations about x- or gamma-ray energy deposition, unusual fiber shaped dense materials need to be developed. We demonstrate in this frame that cerium doped LuAG is a serious candidate for...
Because of its bright and fast scintillation cerium-doped Lu₃Al₅O₁₂ (LuAG:Ce) crystals have attracte...
Properties of different scintillating fibers were examined and compared, as a part of the design opt...
A novel geometry for a sampling calorimeter employing inorganic scintillators as an active medium is...
For the next generation of calorimeters, designed to improve the energy resolution of hadrons and je...
Undoped and Ce3+-doped Lu3Al5O12 (LuAG) fibers were grown to evaluate their potential use in new par...
International audienceUndoped and Ce-doped $Lu_3Al_5O_{12}$ (LuAG) and $Y_3Al_5O_{12}$ (YAG) single ...
For the next generation of calorimeters, designed to improve the energy resolution of hadrons and je...
The progresses in the micropulling-down technique allow heavy scintillating crystals to be grown dir...
Single crystalline Cerium doped and undoped lutetium aluminum garnet fibers (Lu3Al5O12 - LuAG) grown...
This thesis focuses on the improvement of the energy resolution of hadron calorimeters. The approach...
International audienceA technological advance in shaped μ-PD crystal growth provided us with high-qu...
This thesis focuses on the improvement of the energy resolution of hadron calorimeters. The approach...
A set of rare earth orthosilicate and garnet scintillators were grown by the micropulling down (μ-PD...
Under a stationary stable regime undoped and Ce-doped LuAG (Lu3Al5O12) single-crystal fibers were gr...
The extremely harsh conditions, in which the detectors will have to operate during the High Luminosi...
Because of its bright and fast scintillation cerium-doped Lu₃Al₅O₁₂ (LuAG:Ce) crystals have attracte...
Properties of different scintillating fibers were examined and compared, as a part of the design opt...
A novel geometry for a sampling calorimeter employing inorganic scintillators as an active medium is...
For the next generation of calorimeters, designed to improve the energy resolution of hadrons and je...
Undoped and Ce3+-doped Lu3Al5O12 (LuAG) fibers were grown to evaluate their potential use in new par...
International audienceUndoped and Ce-doped $Lu_3Al_5O_{12}$ (LuAG) and $Y_3Al_5O_{12}$ (YAG) single ...
For the next generation of calorimeters, designed to improve the energy resolution of hadrons and je...
The progresses in the micropulling-down technique allow heavy scintillating crystals to be grown dir...
Single crystalline Cerium doped and undoped lutetium aluminum garnet fibers (Lu3Al5O12 - LuAG) grown...
This thesis focuses on the improvement of the energy resolution of hadron calorimeters. The approach...
International audienceA technological advance in shaped μ-PD crystal growth provided us with high-qu...
This thesis focuses on the improvement of the energy resolution of hadron calorimeters. The approach...
A set of rare earth orthosilicate and garnet scintillators were grown by the micropulling down (μ-PD...
Under a stationary stable regime undoped and Ce-doped LuAG (Lu3Al5O12) single-crystal fibers were gr...
The extremely harsh conditions, in which the detectors will have to operate during the High Luminosi...
Because of its bright and fast scintillation cerium-doped Lu₃Al₅O₁₂ (LuAG:Ce) crystals have attracte...
Properties of different scintillating fibers were examined and compared, as a part of the design opt...
A novel geometry for a sampling calorimeter employing inorganic scintillators as an active medium is...