Published July 12, 2007 | Version Published
Book Section - Chapter Open

Monitoring the Low-Energy Gamma-Ray Sky Using Earth Occultation with GLAST GBM

  • 1. ROR icon Louisiana State University
  • 2. ROR icon Southern University and Agricultural and Mechanical College
  • 3. ROR icon Marshall Space Flight Center
  • 4. ROR icon Los Alamos National Laboratory
  • 5. ROR icon Jet Propulsion Lab
  • 6. ROR icon Infrared Processing and Analysis Center

Abstract

Long term all-sky monitoring of the 20 keV – 2 MeV gamma-ray sky using the Earth occultation technique was demonstrated by the BATSE instrument on the Compton Gamma Ray Observatory. The principles and techniques used for the development of an end-to-end earth occultation data analysis system for BATSE can be extended to the GLAST Burst Monitor (GBM), resulting in multiband light curves and time-resolved spectra in the energy range 8 keV to above 1 MeV for known gamma-ray sources and transient outbursts, as well as the discovery of new sources of gamma-ray emission. In this paper we describe the application of the technique to the GBM. We also present the expected sensitivity for the GBM.

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© 2007 American Institute of Physics.

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Eprint ID
8497
Resolver ID
CaltechAUTHORS:CASaipcp07

Dates

Created
2007-08-16
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Updated
2021-11-08
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Series Name
AIP Conference Proceedings
Series Volume or Issue Number
921