The Moon as a Cosmic-Ray Spectrometer: Prospects for MeV Gamma-Ray Observations
Abstract
The Moon is the closest celestial gamma-ray emitting object. Its gamma-ray emission arises from interactions between Galactic cosmic rays (CRs) and the lunar surface. While the lunar GeV gamma-ray spectrum is dominated by a continuum from hadronic decay processes, the MeV emission exhibits both continuum and distinctive spectral lines from nuclear de-excitation and radioactive decay processes. Using Geant4 Monte Carlo particle simulations, we model the lunar gamma-ray spectrum. Our results demonstrate its consistency with Fermi-LAT observations, and predict that next-generation MeV gamma-ray instruments will detect both the lunar MeV continuum and several key spectral line features, notably the line from de-excitation enhanced by the lunar surface composition, the annihilation line, and radioactive decay lines from () and long-lived (). These gamma-ray lines are sensitive to CRs with energies , offering unique temporal probes of CR activity over different timescales. Observations of the lunar MeV gamma-ray spectrum will therefore open a new window to study the current irradiation of the solar-terrestrial environment by low-energy CRs and its long-term temporal evolution.
Keywords
Cite
@article{arxiv.2504.07195,
title = {The Moon as a Cosmic-Ray Spectrometer: Prospects for MeV Gamma-Ray Observations},
author = {Tatsuki Fujiwara and Ellis R. Owen and Yoshiyuki Inoue and Manel Errando and Kohei Fukuda and Kazuhiro Nakazawa and Hirokazu Odaka and Keigo Okuma and Kentaro Terada and Naomi Tsuji and Yasunobu Uchiyama and Hiroki Yoneda and Ao Zhang},
journal= {arXiv preprint arXiv:2504.07195},
year = {2025}
}
Comments
15 pages, 8 figures, 1 table, accepted for publication in ApJ