The COMPTEL instrumental line background
arXiv:astro-ph/0012332 · doi:10.1051/0004-6361:20000489
Abstract
The instrumental line background of the Compton telescope COMPTEL onboard the Compton Gamma-Ray Observatory is due to the activation and/or decay of many isotopes. The major components of this background can be attributed to eight individual isotopes, namely 2D, 22Na, 24Na, 28Al, 40K, 52Mn, 57Ni, and 208Tl. The identification of instrumental lines with specific isotopes is based on the line energies as well as on the variation of the event rate with time, cosmic-ray intensity, and deposited radiation dose during passages through the South-Atlantic Anomaly. The characteristic variation of the event rate due to a specific isotope depends on its life-time, orbital parameters such as the altitude of the satellite above Earth, and the solar cycle. A detailed understanding of the background contributions from instrumental lines is crucial at MeV energies for measuring the cosmic diffuse gamma-ray background and for observing gamma-ray line emission in the interstellar medium or from supernovae and their remnants. Procedures to determine the event rate from each background isotope are described, and their average activity in spacecraft materials over the first seven years of the mission is estimated.
accepted for publication in A&A, 22 pages, 21 figures
Cited by in corpus (21)
- Constraints on Cosmological Dark Matter Annihilation from the Fermi-LAT Isotropic Diffuse Gamma-Ray Measurement
- Observation of Diffuse Cosmic and Atmospheric Gamma Rays at Balloon Altitudes with an Electron-tracking Compton Camera
- An Electron-Tracking Compton Telescope for a Survey of the Deep Universe by MeV gamma-rays
- MGGPOD: a Monte Carlo Suite for Modeling Instrumental Line and Continuum Backgrounds in Gamma-Ray Astronomy
- First observation of MeV gamma-ray universe with bijective imaging spectroscopy using the Electron-Tracking Compton Telescope aboard SMILE-2+
- COMPTEL upper limits for the 56Co gamma-ray emission from SN1998bu
- The contribution of ultracompact dark matter minihalos to the isotropic radio background
- Balloon Flight Test of a Compton Telescope Based on Scintillators with Silicon Photomultiplier Readouts
- Imaging Polarimeter for a Sub-MeV Gamma-Ray All-Sky Survey using an Electron-Tracking Compton Camera
- Natural emergence of neutrino masses and dark matter from -symmetry
- CubeSats for Gamma-Ray Astronomy
- Detection of positron in-flight annihilation from the Galaxy
- COMPTEL data analysis using GammaLib and ctools
- Performance of a new electron-tracking Compton camera under intense radiations from a water target irradiated with a proton beam
- Cold Positrons from Decaying Dark Matter
- Gamma-Ray Burst Polarimetry with the COMCUBE-S CubeSat Swarm -- Design and Performance Simulations
- Background contributions in the electron-tracking Compton camera onboard SMILE-2+
- Enhancing Compton telescope imaging with maximum a posteriori estimation: a modified Richardson-Lucy algorithm for the Compton Spectrometer and Imager
- Pre-flight Background Estimates for COSI
- Diffuse continuum emission and large extended sources at MeV energies
- Multi-column Compton Camera of stacked Si pixel sensors for sub-degree angular resolution