Pair Production Detectors for Gamma-ray Astrophysics
arXiv:2210.14121 · doi:10.1007/978-981-16-4544-0_159-1
Abstract
Electron-positron pair production is the essential process for high-energy gamma-ray astrophysical observations. Following the pioneering OSO-3 counter telescope, the field evolved into use of particle tracking instruments, largely derived from high-energy physics detectors. Although many of the techniques were developed on balloon-borne gamma-ray telescopes, the need to escape the high background in the atmosphere meant that the breakthrough discoveries came from the SAS-2 and COS-B satellites. The next major pair production success was EGRET on the Compton Gamma Ray Observatory, which provided the first all-sky map at energies above 100 MeV and found a variety of gamma-ray sources, many of which were variable. The current generation of pair production telescopes, AGILE and Fermi LAT, have broadened high-energy gamma-ray astrophysics with particular emphasis on multiwavelength and multimessenger studies. A variety of options remain open for future missions based on pair production with improved instrumental performance.
35 pages, 17 figures, To appear in "Handbook of X-ray and Gamma-ray Astrophysics" by Springer - Editors in chief: C. Bambi and A. Santangelo
References in corpus (10)
- Giant Gamma-ray Bubbles from Fermi-LAT: AGN Activity or Bipolar Galactic Wind?
- Detection of the Characteristic Pion-Decay Signature in Supernova Remnants
- Discovery of Powerful Gamma-Ray Flares from the Crab Nebula
- Fermi Establishes Classical Novae as a Distinct Class of Gamma-Ray Sources
- Gamma ray astrophysics: the EGRET results
- AMEGO: Exploring the Extreme Multimessenger Universe
- Fermi Large Area Telescope Performance After 10 Years Of Operation
- Performance measurement of HARPO: a Time Projection Chamber as a gamma-ray telescope and polarimeter
- The Second AGILE Catalog of Gamma-Ray Sources
- Gamma- and Cosmic-Ray Observations with the GAMMA-400 Gamma-Ray Telescope