For the first time, lead fluoride is used as a fast and compact material in electromagnetic calorimetry. Excellent optical and mechanical properties of the pure Cherenkov crystals are necessary for the A4 collaboration to perform a measurement of the nucleon's strange form factors. Visible scattering and absorption centers as well as surface damages have been investigated to characterize the quality of more than one thousand crystals. Besides, transmittance measurements have been performed on all crystals to reveal absorption bands produced by intrinsic or impurity related point-structure defects. As a consequence, 89 crystals had to be replaced by the Chinese manufacturer SICCAS
Sufficient energy resolution is the key issue for the calorimetry in particle and nuclear physics. T...
The aim of the work is to carry out investigation of optical spectra of sodium fluoride crystals wit...
In this paper we simulate the charged particle interaction with complex structures, including the em...
Lead fluoride (PbF$_2$) crystals represent an excellent and relatively innovative choice for high re...
The structure of the nucleon is at present the subject of intensive research.Although the proton doe...
An effort has been made to introduce scintillation light in lead fluoride crystals by selective dop...
An effort was made to introduce scintillation light in lead fluoride crystals by selective doping. ...
In the context of this thesis the highly transparent Cherenkov material lead fluoride (PbF_2) has be...
The properties of four PbF_2 crystals of size 21.21.175 mm"3 were studied with electron and pio...
Background: In this research, the response of a 10 × 10 × 10 mm3 commercially available PbF2 crystal...
Good UV transmittance and some scintillation light are two requirements for materials to be used to ...
The well-established technology of electromagnetic calorimetry using Lead Tungstate crystals has rec...
AbstractThe well-established technology of electromagnetic calorimetry using Lead Tungstate crystals...
The electromagnetic calorimeter of PANDA at the FAIR facility will rely on an operation of lead tung...
Lead tungstate crystals doped with small fractions of praesodynium or molybdenum have been tested in...
Sufficient energy resolution is the key issue for the calorimetry in particle and nuclear physics. T...
The aim of the work is to carry out investigation of optical spectra of sodium fluoride crystals wit...
In this paper we simulate the charged particle interaction with complex structures, including the em...
Lead fluoride (PbF$_2$) crystals represent an excellent and relatively innovative choice for high re...
The structure of the nucleon is at present the subject of intensive research.Although the proton doe...
An effort has been made to introduce scintillation light in lead fluoride crystals by selective dop...
An effort was made to introduce scintillation light in lead fluoride crystals by selective doping. ...
In the context of this thesis the highly transparent Cherenkov material lead fluoride (PbF_2) has be...
The properties of four PbF_2 crystals of size 21.21.175 mm"3 were studied with electron and pio...
Background: In this research, the response of a 10 × 10 × 10 mm3 commercially available PbF2 crystal...
Good UV transmittance and some scintillation light are two requirements for materials to be used to ...
The well-established technology of electromagnetic calorimetry using Lead Tungstate crystals has rec...
AbstractThe well-established technology of electromagnetic calorimetry using Lead Tungstate crystals...
The electromagnetic calorimeter of PANDA at the FAIR facility will rely on an operation of lead tung...
Lead tungstate crystals doped with small fractions of praesodynium or molybdenum have been tested in...
Sufficient energy resolution is the key issue for the calorimetry in particle and nuclear physics. T...
The aim of the work is to carry out investigation of optical spectra of sodium fluoride crystals wit...
In this paper we simulate the charged particle interaction with complex structures, including the em...