A technique based on neutron activation has been developed for an extremely high sensitivity analysis of trace elements in organic materials. Organic materials are sealed in plastic or high-purity quartz and irradiated at the HFIR and MITR. The most volatile materials such as liquid scintillator (LS) are first preconcentrated by clean vacuum evaporation. Activities of interest are separated from side activities by acid digestion and ion exchange. The technique has been applied to study the liquid scintillator used in the KamLAND neutrino experiment. Detection limits of \u3c2.4×10−15 g 40K/g LS, \u3c5.5×10−15 g Th/g LS, and \u3c8×10−15 g U/g LS have been achieved
The combined effects of the nuclear industrial renaissance, the events of 9/11, and the Fukushima di...
The electron antineutrino spectrum in the Stereo reactor experiment (ILL Grenoble) is measured via t...
Modern technology uses high purity materials which have to be characterised by measuring impurities...
A technique based on neutron activation has been developed for an extremely high sensitivity analysi...
The use of organic scintillators is an established method for the measurement of neutron spectra abo...
We report on recent efforts to design a solid plastic scintillation hodoscope to measure neutron pro...
The purpose of this research was to develop a radiation detection device so sensitive that a decay r...
This paper presents some results of the development of two new scintillation detectors usable for th...
A new large neutrino detector called KamLAND (Kamioka Liquid scintillator AntiN eutrino Detector) i...
Many neutrino physics experiments use organic liquid scintillators, which present a unique advantage...
Liquid organic scintillators are important devices for measurements of neutron radiation. This work ...
There exists an ongoing need to develop and improve methods of detecting radioactive materials. Sinc...
There exists an ongoing need to develop and improve methods of detecting radioactive materials. As e...
The development of new types of detectors and the increased performance of the electronics have pave...
Neutrons are widely used as probes of matter to study materials in a broad range of fields from phys...
The combined effects of the nuclear industrial renaissance, the events of 9/11, and the Fukushima di...
The electron antineutrino spectrum in the Stereo reactor experiment (ILL Grenoble) is measured via t...
Modern technology uses high purity materials which have to be characterised by measuring impurities...
A technique based on neutron activation has been developed for an extremely high sensitivity analysi...
The use of organic scintillators is an established method for the measurement of neutron spectra abo...
We report on recent efforts to design a solid plastic scintillation hodoscope to measure neutron pro...
The purpose of this research was to develop a radiation detection device so sensitive that a decay r...
This paper presents some results of the development of two new scintillation detectors usable for th...
A new large neutrino detector called KamLAND (Kamioka Liquid scintillator AntiN eutrino Detector) i...
Many neutrino physics experiments use organic liquid scintillators, which present a unique advantage...
Liquid organic scintillators are important devices for measurements of neutron radiation. This work ...
There exists an ongoing need to develop and improve methods of detecting radioactive materials. Sinc...
There exists an ongoing need to develop and improve methods of detecting radioactive materials. As e...
The development of new types of detectors and the increased performance of the electronics have pave...
Neutrons are widely used as probes of matter to study materials in a broad range of fields from phys...
The combined effects of the nuclear industrial renaissance, the events of 9/11, and the Fukushima di...
The electron antineutrino spectrum in the Stereo reactor experiment (ILL Grenoble) is measured via t...
Modern technology uses high purity materials which have to be characterised by measuring impurities...