English

Direct evidence for shock-powered optical emission in a nova

High Energy Astrophysical Phenomena 2020-04-14 v1

Abstract

Classical novae are thermonuclear explosions that occur on the surfaces of white dwarf stars in interacting binary systems (Bode & Evans 2008). It has long been thought that the luminosity of classical novae is powered by continued nuclear burning on the surface of the white dwarf after the initial runaway (Gallaher & Starrfield 1978). However, recent observations of GeV γ\gamma-rays from classical novae have hinted that shocks internal to the nova ejecta may dominate the nova emission. Shocks have also been suggested to power the luminosity of events as diverse as stellar mergers (Metzger & Pejcha 2017), supernovae (Moriya et al. 2018), and tidal disruption events (Roth et al. 2016), but observational confirmation has been lacking. Here we report simultaneous space-based optical and γ\gamma-ray observations of the 2018 nova V906 Carinae (ASASSN-18fv), revealing a remarkable series of distinct correlated flares in both bands. The optical and γ\gamma-ray flares occur simultaneously, implying a common origin in shocks. During the flares, the nova luminosity doubles, implying that the bulk of the luminosity is shock-powered. Furthermore, we detect concurrent but weak X-ray emission from deeply embedded shocks, confirming that the shock power does not appear in the X-ray band and supporting its emergence at longer wavelengths. Our data, spanning the spectrum from radio to γ\gamma-ray, provide direct evidence that shocks can power substantial luminosity in classical novae and other optical transients.

Keywords

Cite

@article{arxiv.2004.05562,
  title  = {Direct evidence for shock-powered optical emission in a nova},
  author = {Elias Aydi and Kirill V. Sokolovsky and Laura Chomiuk and Elad Steinberg and Kwan Lok Li and Indrek Vurm and Brian D. Metzger and Jay Strader and Koji Mukai and Ondřej Pejcha and Ken J. Shen and Gregg A. Wade and Rainer Kuschnig and Anthony F. J. Moffat and Herbert Pablo and Andrzej Pigulski and Adam Popowicz and Werner Weiss and Konstanze Zwintz and Luca Izzo and Karen R. Pollard and Gerald Handler and Stuart D. Ryder and Miroslav D. Filipović and Rami Z. E. Alsaberi and Perica Manojlović and Raimundo Lopes de Oliveira and Frederick M. Walter and Patrick J. Vallely and David A. H. Buckley and Michael J. I. Brown and Eamonn J. Harvey and Adam Kawash and Alexei Kniazev and Christopher S. Kochanek and Justin Linford and Joanna Mikolajewska and Paolo Molaro and Marina Orio and Kim L. Page and Benjamin J. Shappee and Jennifer L. Sokoloski},
  journal= {arXiv preprint arXiv:2004.05562},
  year   = {2020}
}

Comments

49 pages including supplementary information. Accepted and published in Nature Astronomy

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