Gamma-Ray Light Curves and Spectra of Classical Novae
arXiv:2112.06893 · doi:10.1093/mnras/stac1672
Abstract
The nucleosynthesis in classical novae, in particular that of radioactive isotopes, is directly measurable by its -ray signature. Despite decades of observations, MeV -rays from novae have never been detected -- neither individually at the time of the explosion, nor as a result of radioactive decay, nor the diffuse Galactic emission from the nova population. Thanks to recent developments in modeling of instrumental background for MeV telescopes such as INTEGRAL/SPI and Fermi/GBM, the prospects to finally detect these elusive transients are greatly enhanced. This demands for updated and refined models of -ray spectra and light curves of classical novae. In this work, we develop numerical models of nova explosions using sub- and near-Chandrasekhar CO white dwarfs as the progenitor. We study the parameter dependence of the explosions, their thermodynamics and energetics, as well as their chemical abundance patterns. We use a Monte-Carlo radiative transfer code to compute -ray light curves and spectra, with a focus on the early time evolution. We compare our results to previous studies and find that the expected 511-keV-line flash at the time of the explosion is heavily suppressed, showing a maximum flux of only cms and thus making it at least one million times fainter than estimated before. This finding would render it impossible for current MeV instruments to detect novae within the first day after the outburst. Nevertheless, our time-resolved spectra can be used for retrospective analyses of archival data, thereby improving the sensitivity of the instruments.
15 pages, 31 figures, submitted to Monthly Notices of the Royal Astronomical Society at 11 Dec 2021
References in corpus (15)
- Array Programming with NumPy
- Modules for Experiments in Stellar Astrophysics (MESA)
- Modules for Experiments in Stellar Astrophysics (MESA): Pulsating Variable Stars, Rotation, Convective Boundaries, and Energy Conservation
- Explosive lithium production in the classical nova V339 Del (Nova Delphini 2013)
- Highly Enriched 7Be in the ejecta of Nova Sagittarii 2015 No. 2 (V5668 Sgr) and the Galactic Lithium origin
- 123-321 Models of Classical Novae
- Lithium and Beryllium in the Gaia-Enceladus Galaxy
- Wave-driven mass loss of stripped envelope massive stars: progenitor-dependence, mass ejection, and supernovae
- Background modelling for -ray spectroscopy with INTEGRAL/SPI
- Fast Blue Optical Transients due to Circumstellar Interaction and the Mysterious Supernova SN 2018gep
- A Physical Background Model for the Fermi Gamma-ray Burst Monitor
- Novae heat their food: mass transfer by irradiation
- Nucleosynthesis constraints through -ray line measurements from classical novae
- An evidence-based assumption that helps to reduce the discrepancy between the observed and predicted Be abundances in novae
- Nova Ophiuchus 2017 as a probe of C nucleosynthesis and carbon monoxide formation and destruction in classical novae
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- A New Versatile Code for Gamma-Ray Monte-Carlo Radiative Transfer