The J-PARC Material and Life Science Experimental Facility (MLF) is a pulsed spallation neutron source in Tokai, Japan. 3 GeV protons produced by the Rapid Cycling Synchrotron (RCS) are directed onto a mercury target at 25 Hz to produce an intense source of neutrons and decay-at-rest neutrinos. In this talk, I will describe the MLF facility with a particular focus on the neutrino source characteristics. I will also describe an upcoming experiment called JSNS2 which will use the MLF neutrino flux to directly test the LSND anomaly and make various cross section measurements. Presented at the 2019 Magnificent Workshop
The Jiangmen Underground Neutrino Observatory (JUNO) is a next generation multi-purpose antineutrino...
We review the ongoing effort in the US, Japan, and Europe of the scientific community to study the l...
The K2K experiment is the first accelerator-based long baseline neutrino experiment aiming to confir...
The J-PARC Sterile Neutrino Search at the J-PARC Spallation Neutron Source (JSNS2) experiment will b...
JSNS$^{2}$ (J-PARC Sterile Neutrino Search at J-PARC Spallation Neutron Source) is a short baseline ...
The JSNS (J-PARC Sterile Neutrino Search at J-PARC Spallation Neutron Source) experiment aims to sea...
In Japan, as the first experiment utilizes J-PARC (Japan Proton Accelerator Research Complex) neutri...
Presentation given at the Magnificent CEvNS workshop (2018) on the subject of efforts towards enabli...
The three neutrino model has 9 physical parameters, 3 neutrino masses, 3 mixing angles and 3 CP viol...
The neutrino facility in the Japan Proton Accelerator Research Complex (J-PARC) produces a very inte...
Neutrinos are some of the most abundant but yet most elusive particles in the universe. They have al...
The study of the neutrino is the study of physics beyond the Standard Model. We now know that the ne...
Presentation given at the 2019 Magnificent CEvNS workshop on the subject of neutrino-source simulati...
We summarize what has been learned about the neutrino mass spectrum and neutrino mixing, identify in...
In this project i have discussed about neutrino oscillation in matter and its implication on astroph...
The Jiangmen Underground Neutrino Observatory (JUNO) is a next generation multi-purpose antineutrino...
We review the ongoing effort in the US, Japan, and Europe of the scientific community to study the l...
The K2K experiment is the first accelerator-based long baseline neutrino experiment aiming to confir...
The J-PARC Sterile Neutrino Search at the J-PARC Spallation Neutron Source (JSNS2) experiment will b...
JSNS$^{2}$ (J-PARC Sterile Neutrino Search at J-PARC Spallation Neutron Source) is a short baseline ...
The JSNS (J-PARC Sterile Neutrino Search at J-PARC Spallation Neutron Source) experiment aims to sea...
In Japan, as the first experiment utilizes J-PARC (Japan Proton Accelerator Research Complex) neutri...
Presentation given at the Magnificent CEvNS workshop (2018) on the subject of efforts towards enabli...
The three neutrino model has 9 physical parameters, 3 neutrino masses, 3 mixing angles and 3 CP viol...
The neutrino facility in the Japan Proton Accelerator Research Complex (J-PARC) produces a very inte...
Neutrinos are some of the most abundant but yet most elusive particles in the universe. They have al...
The study of the neutrino is the study of physics beyond the Standard Model. We now know that the ne...
Presentation given at the 2019 Magnificent CEvNS workshop on the subject of neutrino-source simulati...
We summarize what has been learned about the neutrino mass spectrum and neutrino mixing, identify in...
In this project i have discussed about neutrino oscillation in matter and its implication on astroph...
The Jiangmen Underground Neutrino Observatory (JUNO) is a next generation multi-purpose antineutrino...
We review the ongoing effort in the US, Japan, and Europe of the scientific community to study the l...
The K2K experiment is the first accelerator-based long baseline neutrino experiment aiming to confir...