A Model of the Cosmic Ray Induced Atmospheric Neutron Environment
arXiv:1410.1364 · doi:10.1016/j.astropartphys.2014.10.002
Abstract
In order to optimise the design of space instruments making use of detection materials with low atomic numbers, an understanding of the atmospheric neutron environment and its dependencies on time and position is needed. To produce a simple equation based model, Monte Carlo simulations were performed to obtain the atmospheric neutron fluxes produced by charged galactic cosmic ray interactions with the atmosphere. Based on the simulation results the omnidirectional neutron environment was parametrised including dependencies on altitude, magnetic latitude and solar activity. The upward- and downward-moving component of the atmospheric neutron flux are considered separately. The energy spectra calculated using these equations were found to be in good agreement with data from a purpose built balloon-borne neutron detector, high altitude aircraft data and previously published simulation based spectra.
Accepted by Astroparticle Physics, awaiting publication
References in corpus (6)
- Measurements of 0.2 to 20 GeV/n cosmic-ray proton and helium spectra from 1997 through 2002 with the BESS spectrometer
- POLAR, a compact detector for Gamma Ray Bursts photon polarization measurements
- Measurement of the isotopic composition of hydrogen and helium nuclei in cosmic rays with the PAMELA experiment
- PoGOLino: a scintillator-based balloon-borne neutron detector
- PoGOLite - A High Sensitivity Balloon-Borne Soft Gamma-ray Polarimeter
- Balloon-borne hard X-ray polarimetry with PoGOLite
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- The PoGO+ Balloon-Borne Hard X-ray Polarimetry Mission
- The design and flight performance of the PoGOLite Pathfinder balloon-borne hard X-ray polarimeter
- Optimising a balloon-borne polarimeter in the hard X-ray domain: from the PoGOLite Pathfinder to PoGO+
- In-orbit background for X-ray detectors
- Improving the low-energy transient sensitivity of AMEGO-X using single-site events
- Shedding new light on the Crab with polarized X-rays
- e-ASTROGAM mission: a major step forward for gamma-ray polarimetry