AbstractReactor neutrinos have been detected in the past 50 years by various detectors for different purposes. Beginning in the 1980s, neutrino physicists have tried to use neutrinos to monitor reactors and develop an optimized detector for nuclear safeguards. Recently, motivated by neutrino oscillation physics, the technology and scale of reactor neutrino detection have progressed considerably. In this review, I will give an overview of the detection technology for reactor neutrinos, and describe the issues related to further improvements in optimized detectors for reactor monitoring
The detection of anti-neutrinos from nuclear reactors at close stand-off is a challenging measuremen...
Since the first observation of antineutrinos from beta decay of the fission products inside a nuclea...
Technical paper presented at the 2018 Defence and Security Doctoral Symposium.Identifying the existe...
Reactor neutrinos have been detected in the past 50 years by various detectors for different purpose...
AbstractReactor neutrinos have been detected in the past 50 years by various detectors for different...
There have been new developments in the field of applied neutrino physics during the last decade. Th...
After being discovered for the first time by Reines and Cowan, reactor antineutrinos have been obser...
Abstract Fission reactors emit large numbers of antineutrinos and this flux may be useful for the me...
5 pages - XXII International Conference On Neutrino Physics And Astrophysics (Neutrino 2006)Internat...
For over 40 years, physicists have considered possible uses for neutrino detectors in nuclear nonpro...
Nuclear reactors have long been a favored source for antineutrino measurements for estimates of powe...
Reactor antineutrinos are used to study neutrino oscillation, search for signatures of non-standard ...
The antineutrino is the only real-time nuclear signature from a fission explosion that propagates gr...
We review the status and the results of reactor neutrino experiments. Short-baseline experiments hav...
Nuclear reactors are the brightest man-made neutrino sources and have been the workhorse of neutrino...
The detection of anti-neutrinos from nuclear reactors at close stand-off is a challenging measuremen...
Since the first observation of antineutrinos from beta decay of the fission products inside a nuclea...
Technical paper presented at the 2018 Defence and Security Doctoral Symposium.Identifying the existe...
Reactor neutrinos have been detected in the past 50 years by various detectors for different purpose...
AbstractReactor neutrinos have been detected in the past 50 years by various detectors for different...
There have been new developments in the field of applied neutrino physics during the last decade. Th...
After being discovered for the first time by Reines and Cowan, reactor antineutrinos have been obser...
Abstract Fission reactors emit large numbers of antineutrinos and this flux may be useful for the me...
5 pages - XXII International Conference On Neutrino Physics And Astrophysics (Neutrino 2006)Internat...
For over 40 years, physicists have considered possible uses for neutrino detectors in nuclear nonpro...
Nuclear reactors have long been a favored source for antineutrino measurements for estimates of powe...
Reactor antineutrinos are used to study neutrino oscillation, search for signatures of non-standard ...
The antineutrino is the only real-time nuclear signature from a fission explosion that propagates gr...
We review the status and the results of reactor neutrino experiments. Short-baseline experiments hav...
Nuclear reactors are the brightest man-made neutrino sources and have been the workhorse of neutrino...
The detection of anti-neutrinos from nuclear reactors at close stand-off is a challenging measuremen...
Since the first observation of antineutrinos from beta decay of the fission products inside a nuclea...
Technical paper presented at the 2018 Defence and Security Doctoral Symposium.Identifying the existe...