The prompt gamma-ray emission of novae
arXiv:astro-ph/0110203 · doi:10.1016/S1387-6473(02)00201-4
Abstract
Classical novae are potential gamma-ray emitters, because of the disintegration of some radioactive nuclei synthesized during the explosion. Some short-lived isotopes (such as 13N and 18F), as well as the medium-lived 22Na, decay emitting positrons, which annihilate with electrons and thus are responsible for the prompt emission of gamma-rays from novae. This emission consists of a 511 keV line plus a continuum between 20 and 511 keV, and is released before the maximum in visual luminosity, i.e., before the discovery of the nova. The main characteristics of this prompt emission, together with the related uncertainties (both of nuclear and hydrodynamical origin, with a particular emphasis on the influence of the envelope properties) and prospects for detectability are analyzed in this paper.
6 pages, 3 figures (6 PS files), to appear in New Astronomy Reviews (Proceedings of the Ringberg Workshop "Astronomy with Radioactivities III")
References in corpus (4)
- Nucleosynthesis in Classical Novae: ONe vs. CO White Dwarfs
- Gamma--ray emission from individual classical novae
- Gamma-ray emission from novae related to positron annihilation: constraints on its observability posed by new experimental nuclear data
- Transient Gamma Ray Spectrometer Measurements of Gamma-Ray Lines from Novae. I. Limits on the Positron Annihilation Line in Five Individual Novae
Cited by in corpus (8)
- The all-sky distribution of 511 keV electron-positron annihilation emission
- Fermi LAT Gamma-ray Detections of Classical Novae V1369 Centauri 2013 and V5668 Sagittarii 2015
- Cosmic nucleosynthesis: a multi-messenger challenge
- Accretion Flows in Nonmagnetic White Dwarf Binaries as Observed in X-rays
- The recurrent nova RS Oph: A possible scenario for type Ia supernovae
- Detectability of gamma-ray emission from classical novae with Swift/BAT
- The Search for Celestial Positronium via the Recombination Spectrum
- Synthesis of radioactive elements in novae and supernovae and their use as a diagnostic tool