AbstractWe present the status of the Angra Neutrino Experiment, aimed at developing an antineutrino detector for monitoring nuclear reactor activity. The detector comprises a 1.42 m3 Gadolinium-Water Cerenkov target, surrounded by 50 cm of water shielding, placed inside a commercial container about 30 m from the reactor core, at the Angra II nuclear power plant, Brazil. The 4 GW thermal power of the Angra II reactor will provide a few thousand antineutrino interactions per day. The main challenge of the experiment is to overcome the very high cosmic ray induced background at sea level. The present text describes the construction status and simulations results
During the last decades, tremendous progresses have been achieved on the fundamental knowledge and d...
The antineutrino is the only real-time nuclear signature from a fission explosion that propagates gr...
Abstract Fission reactors emit large numbers of antineutrinos and this flux may be useful for the me...
We present the status of the Angra Neutrino project, describing the development of an antineutrino d...
We present the status of the Angra Neutrino project, describing the development of an antineutrino d...
We present the status of the Angra Neutrino Experiment, aimed at developing an antineutrino detector...
AbstractWe present the status of the Angra Neutrino Experiment, aimed at developing an antineutrino ...
The Neutrinos Angra Experiment is a water-based Cherenkov detector located in the Angra dos Reis nuc...
We present the status and plans of the Angra Project, a new nuclear reactor neutrino oscillation exp...
We present the status and plans of the Angra Project, a new nuclear reactor neutrino oscillation exp...
The Neutrinos Angra Experiment has completed a major step by finishing the commissioning of the dete...
The Neutrinos Angra Project aims to develop a compact detector capable of measuring the antineutrin...
We present a simulation-based study for monitoring Akkuyu nuclear power plant's activity using antin...
After being discovered for the first time by Reines and Cowan, reactor antineutrinos have been obser...
Reatores nucleares constituem uma copiosa fonte de anti-neutrinos, cujo espectro é determinado pelo ...
During the last decades, tremendous progresses have been achieved on the fundamental knowledge and d...
The antineutrino is the only real-time nuclear signature from a fission explosion that propagates gr...
Abstract Fission reactors emit large numbers of antineutrinos and this flux may be useful for the me...
We present the status of the Angra Neutrino project, describing the development of an antineutrino d...
We present the status of the Angra Neutrino project, describing the development of an antineutrino d...
We present the status of the Angra Neutrino Experiment, aimed at developing an antineutrino detector...
AbstractWe present the status of the Angra Neutrino Experiment, aimed at developing an antineutrino ...
The Neutrinos Angra Experiment is a water-based Cherenkov detector located in the Angra dos Reis nuc...
We present the status and plans of the Angra Project, a new nuclear reactor neutrino oscillation exp...
We present the status and plans of the Angra Project, a new nuclear reactor neutrino oscillation exp...
The Neutrinos Angra Experiment has completed a major step by finishing the commissioning of the dete...
The Neutrinos Angra Project aims to develop a compact detector capable of measuring the antineutrin...
We present a simulation-based study for monitoring Akkuyu nuclear power plant's activity using antin...
After being discovered for the first time by Reines and Cowan, reactor antineutrinos have been obser...
Reatores nucleares constituem uma copiosa fonte de anti-neutrinos, cujo espectro é determinado pelo ...
During the last decades, tremendous progresses have been achieved on the fundamental knowledge and d...
The antineutrino is the only real-time nuclear signature from a fission explosion that propagates gr...
Abstract Fission reactors emit large numbers of antineutrinos and this flux may be useful for the me...