English

A multiwavelength light curve analysis of the classical nova KT Eri: Optical contribution from a large irradiated accretion disk

Solar and Stellar Astrophysics 2024-12-03 v1 High Energy Astrophysical Phenomena

Abstract

KT Eri is a classical nova which went into outburst in 2009. Recent photometric analysis in quiescence indicates a relatively longer orbital period of 2.6 days, so that KT Eri could host a very bright accretion disk during the outburst like in the recurrent nova U Sco, the orbital period of which is 1.23 days. We reproduced the optical VV light curve as well as the supersoft X-ray light curve of KT Eri in outburst, assuming a large irradiated disk during a nova wind phase of the outburst while a normal size disk after the nova winds stop. This result is consistent with the temporal variation of wide-band VV brightness that varies almost with the intermediate-band Str\"omgren yy brightness, because the VV flux is dominated by continuum radiation, the origin of which is a photospheric emission from the very bright disk. We obtained the white dwarf mass to be MWD=1.3±0.02 MM_{\rm WD}= 1.3\pm0.02 ~M_\odot, the hydrogen-burning turnoff epoch to be 240\sim 240 days after the outburst, the distance modulus in the VV band to be (mM)V=13.4±0.2(m-M)_V=13.4\pm 0.2, and the distance to KT Eri to be d=4.2±0.4d=4.2\pm0.4 kpc for the reddening of E(BV)=0.08E(B-V)= 0.08. The peak absolute VV brightness is about MV,max=8.0M_{V, \rm max}= -8.0 and the corresponding recurrence time is 3,000\sim 3,000 yr from its ignition mass together with the mean mass-accretion rate of M˙acc1×109 M\dot{M}_{\rm acc}\sim 1\times 10^{-9} ~M_\odot yr1^{-1} in quiescence. Thus, we suggest that KT Eri is not a recurrent nova.

Keywords

Cite

@article{arxiv.2412.00250,
  title  = {A multiwavelength light curve analysis of the classical nova KT Eri: Optical contribution from a large irradiated accretion disk},
  author = {Izumi Hachisu and Mariko Kato and Frederick M. Walter},
  journal= {arXiv preprint arXiv:2412.00250},
  year   = {2024}
}

Comments

33 pages, 12 figures, accepted for publication in ApJ