Rise and fall of the dust shell of the classical nova V339 Delphini
arXiv:1612.06241 · doi:10.1093/mnras/stw3334
Abstract
We present infrared spectroscopy of the classical nova V339 Delphini, obtained over a year period. The infrared emission lines were initially symmetrical, with HWHM velocities of 525 km s. In later (days, where is the time from outburst) spectra however, the lines displayed a distinct asymmetry, with a much stronger blue wing, possibly due to obscuration of the receding component by dust. Dust formation commenced at day 34.75 at a condensation temperature of K, consistent with graphitic carbon. Thereafter the dust temperature declined with time as , also consistent with graphitic carbon. The mass of dust initally rose, as a result of an increase in grain size and/or number, peaked at day 100, and then declined precipitously. This decline was most likely caused by grain shattering due to electrostatic stress after the dust was exposed to X-radiation. An Appendix summarises Planck Means for carbon, and the determination of grain mass and radius for a carbon dust shell.
Accepted by MNRAS on 19 December 2016. 19 pages