arXiv · 2206.00703
Concept for a Space-based Near-Solar Neutrino Detector
Abstract
The concept of putting a neutrino detector in close orbit of the sun has been unexplored until very recently. The primary scientific return is to vastly enhance our understanding of the solar interior, which is a major NASA goal. Preliminary calculations show that such a spacecraft, if properly shielded, can operate in space environments while taking data from neutrino interactions. These interactions can be distinguished from random background rates of solar electromagnetic emissions, galactic charged cosmic-rays, and gamma-rays by using a double pulsed signature. Early simulations of this project have shown this veto schema to be successful in eliminating background and identifying the neutrino interaction signal in upwards of 75% of gamma ray interactions and nearly 100% of other interactions. Hence, we propose a new instrument to explore and study our sun. Due to inverse square scaling, this instrument has the potential to outperform earth-based experiments in several domains such as making measurements not accessible from the earth's orbit.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
N. Solomey, J. Folkerts, H. Meyer, C. Gimar, J. Novak, B. Doty, T. English, L. Buchele, A. Nelsen, R. McTaggart, M. Christl. 2022-06-01. Concept for a Space-based Near-Solar Neutrino Detector. https://doi.org/10.1016/j.nima.2023.168064
Cite the original work for its findings. Save a collection to share your selection of sources.