Neutrinos from Artificial Sources
A special issue of Universe (ISSN 2218-1997). This special issue belongs to the section "High Energy Nuclear and Particle Physics".
Deadline for manuscript submissions: closed (30 August 2023) | Viewed by 6049
Special Issue Editors
2. Istituto Nazionale di Fisica Nucleare - Sezione di Milano Bicocca, Piazza della Scienza 3, I-20126 Milano, Italy
Interests: experimental particle physics; particle detectors; neutrino physics; accelerator-based neutrino beams; neutrino interactions; neutrino oscillations; neutrinoless double beta decay
Special Issues, Collections and Topics in MDPI journals
2. Istituto Nazionale di Fisica Nucleare - Sezione di Milano Bicocca, Piazza della Scienza 3, I-20126 Milano, Italy
Interests: neutrino physics; rare events physics; experimental particle physics; particle detectors; light detection devices; neutrino interactions; neutrino oscillations; cryogenic detectors
Special Issue Information
Dear Colleagues,
In the visible Universe, neutrinos are the most abundant particles after photons; nevertheless, their interactions with matter are rare, only through weak forces, which makes the study of their properties very challenging. In recent years, outstanding results have been achieved with natural neutrino sources, leading to a Nobel Prize in 2015 for the discovery of the neutrino flavor oscillations. Nowadays, man-made neutrino sources offer a powerful tool for the precision era of neutrino physics, able to help in shedding light on some of the most important open questions in the physics community, such as why there is more matter than antimatter in the Universe. Assets derived from exploiting neutrinos produced in artificial sources are different. The precise control that can be reached in the production of high-intensity fluxes and the knowledge of their energy, initial flavor and the exact path taken from source to detector make neutrino experiments more effective and sensitive to possible discoveries. Neutrinos from artificial sources have already been proven to be essential for advances in the field, strengthening the three-neutrino oscillation paradigm by improving the precision of the measured parameters. After the discovery of theta_13, the observation of anomalies in the electron antineutrino flux from reactors and anomalies in short baseline experiments, an even greater effort was put into the development of new facilities.
The main topics this Special Issue will cover are related to the physics reach of man-made neutrinos produced via both conventional and novel techniques, specifically:
- Reactor antineutrinos;
- Accelerator neutrino beams;
- Neutrinos from decay at rest;
- Neutrino from spallation sources;
- Neutrino from muon storage rings;
- Beta beam neutrinos.
We invite the submission of original contributions to this Special Issue of Universe, the purpose of which is to review the current status, discuss future perspectives, and stimulate discussion of the topics presented above.
Dr. Antonio Branca
Dr. Andrea Falcone
Guest Editors
Manuscript Submission Information
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Keywords
- reactor neutrinos
- accelerator neutrinos
- neutrino mixing
- neutrino oscillations
- neutrino masses
- neutrino CP violation
- neutrino interactions
- neutrino detectors
- sterile neutrinos
- neutrino anomalies
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