Optical detection of the X-ray flash in the very fast nova V1674 Her: Optical contribution of the irradiated accretion disk
arXiv:2507.06493
Abstract
V1674 Her is one of the fastest and brightest novae, characterized by dense optical photometry in the pre-maximum phase, a rise from to 7 mag, in one-fourth of a day. We present a composite theoretical light curve model of its early rising phase starting from a quiescent brightness of mag. Our light curve model consists of a hot and bright white dwarf (WD) and irradiated accretion disk and companion star. We found that the earliest optical detection of ASAS-SN band brightness of at day from the onset of thermonuclear runaway can be explained with the irradiated accretion disk and companion star in the X-ray flash phase of a WD. This is the first detection in optical of an X-ray flash phase of a nova. Optically thick winds emerge from the WD photosphere at day, and optical flux is dominated by free-free emission from optically-thin ejecta just outside the WD photosphere. Our free-free emission model light curve reasonably reproduces the dense light curve of Evryscope that spans from (at 0.078 day) to (at 0.279 day), including a sudden change of slope in the light curve from slow to rapid rise at on day . There is no indication of shocking power during the rising phase from to 7.1.
14 pages, 8 figures, accepted for publication in ApJ