Constraining the low-energy cosmic ray flux in the central molecular zone from MeV nuclear deexcitation line observations
arXiv:2409.19350 · doi:10.1103/PhysRevD.110.063033
Abstract
Low-energy cosmic rays (LECRs) dominate the ionization in dense regions of molecular clouds in which other ionizers such as UV or X-ray photons are effectively shielded. Thus it was argued that the high ionization rate at the central molecular zone (CMZ) of our Galaxy is mainly caused by LECRs. However, the required LECR flux is orders of magnitude higher than the extrapolation of GeV cosmic ray (CR) flux derived from GeV gamma-ray observations. In this paper, we considered two types of additional LECR components and found that only very soft anomalous CR components can explain such a high ionization rate. This LECR component will inevitably produce MeV nuclear deexcitation lines due to their inelastic scattering with the ambient gas. We calculated the MeV line emission and discussed the detectability of next-generation MeV instruments. We found that future MeV observations can be used to pin down the origin of the high ionization rate in the CMZ.
Published in Physical Review D
References in corpus (11)
- Parametrization of gamma-ray production cross-sections for pp interactions in a broad proton energy range from the kinematic threshold to PeV energies
- Herschel Survey of Galactic OH+, H2O+, and H3O+: Probing the Molecular Hydrogen Fraction and Cosmic-Ray Ionization Rate
- The Central 300 pc of the Galaxy probed by infrared spectra of H and CO: part I. Predominance of warm and diffuse gas and high H ionization rate
- Nonthermal X-rays from low-energy cosmic rays: Application to the 6.4 keV line emission from the Arches cluster region
- Non-linear diffusive acceleration of heavy nuclei in supernova remnant shocks
- Low energy cosmic rays
- Diffuse Galactic emission spectrum between 0.5 and 8.0 MeV
- Measurements of nuclear -ray line emission in interactions of protons and particles with N, O, Ne and Si
- Can a cosmic ray carrot explain the ionization level in diffuse molecular clouds?
- Nuclear de-excitation lines as a probe of low-energy cosmic rays
- New estimation of the nuclear de-excitation line emission from the supernova remnant Cassiopeia A