In the field of scintillators, high scintillation and light production performance require high-quality crystals. Although the composition and structure of crystals are fundamental in this direction, their ultimate optical performance is strongly dependent on the surface finishing treatment. This paper compares two surface finishing methods in terms of the final structural condition of the surface and the relative light yield performances. The first polishing method is the conventional “Mechanical Diamond Polishing” (MDP) technique. The second polishing technique is a method applied in the electronics industry which is envisaged for finishing the surface treatment of scintillator crystals. This method, named “Chemical Mech...
The results of analysis of the PWO radiation hardness depending of crystal growth technology are pre...
This paper is devoted to mass production of the most popular now scintillation material in high ener...
Residual internal stresses in PbWO4 (PWO) scintillating crystals grown by Bridgman method have been ...
In the field of scintillators, high scintillation and light production performance require high-qual...
The investigation performed up to now on single crystals of PbWO/sub 4/ (PWO) provides the evidence ...
Step by step procedures are given for polishing the scintillator rods. A Strasbaugh spindle polishin...
In this paper we summarize the results of a research programme on lead-tungstate (PWO) crystals perf...
International audienceIn the context of the ClearMind project, we measured the scintillating propert...
A new approach to interpret the radiation hardness of PbWO//4 (PWO) scintillators is developed by re...
The latest results in improvement of scintillator properties with Nb doping of PbWO4 crystal are pre...
We have developed new machining and polishing techniques that have previously been applied to large ...
Oxide crystals have a great potential to develop new advanced scintillation materials which are dens...
This year an extensive R&D on lead tungstate crystals has entered into the pre-production phase at t...
Abstract—We report in this paper an investigation on radiation hardness of 20 cm long PWO-II crystal...
Certifying procedures and fully automated equipment for testing of Pb WO/sub 4/ (PWO) scintillators ...
The results of analysis of the PWO radiation hardness depending of crystal growth technology are pre...
This paper is devoted to mass production of the most popular now scintillation material in high ener...
Residual internal stresses in PbWO4 (PWO) scintillating crystals grown by Bridgman method have been ...
In the field of scintillators, high scintillation and light production performance require high-qual...
The investigation performed up to now on single crystals of PbWO/sub 4/ (PWO) provides the evidence ...
Step by step procedures are given for polishing the scintillator rods. A Strasbaugh spindle polishin...
In this paper we summarize the results of a research programme on lead-tungstate (PWO) crystals perf...
International audienceIn the context of the ClearMind project, we measured the scintillating propert...
A new approach to interpret the radiation hardness of PbWO//4 (PWO) scintillators is developed by re...
The latest results in improvement of scintillator properties with Nb doping of PbWO4 crystal are pre...
We have developed new machining and polishing techniques that have previously been applied to large ...
Oxide crystals have a great potential to develop new advanced scintillation materials which are dens...
This year an extensive R&D on lead tungstate crystals has entered into the pre-production phase at t...
Abstract—We report in this paper an investigation on radiation hardness of 20 cm long PWO-II crystal...
Certifying procedures and fully automated equipment for testing of Pb WO/sub 4/ (PWO) scintillators ...
The results of analysis of the PWO radiation hardness depending of crystal growth technology are pre...
This paper is devoted to mass production of the most popular now scintillation material in high ener...
Residual internal stresses in PbWO4 (PWO) scintillating crystals grown by Bridgman method have been ...