The January 2016 eruption of recurrent nova LMC 1968
N.P.M. Kuin, K.L. Page, P. Mr\'oz, M.J. Darnley, S. N. Shore, J.P., Osborne, F. Walter, F. Di Mille, N. Morrell, U. Munari, T. Bohlsen, A. Evans,, R.D. Gehrz, S. Starrfield, M. Henze, S.C. Williams, G.J. Schwarz, A. Udalski,, M.K. Szyma\'nski, R. Poleski, I. Soszy\'nski

TL;DR
This paper provides a detailed observational analysis of the recurrent nova LMC 1968, including its eruption history, spectral features, and system properties, revealing insights into its eruption cycle, composition, and accretion processes.
Contribution
It offers the first comprehensive review of all observed eruptions of LMC 1968, deriving a recurrence time and analyzing spectral and photometric data to understand the system's behavior.
Findings
Recurrence time of approximately 6.2 years.
Spectra dominated by hydrogen and helium lines.
Evidence of high orbital inclination and complex ejecta reionization.
Abstract
We present a comprehensive review of all observations of the eclipsing recurrent Nova LMC 1968 in the Large Magellanic Cloud which was previously observed in eruption in 1968, 1990, 2002, 2010, and most recently in 2016. We derive a probable recurrence time of years and provide the ephemerides of the eclipse. In the ultraviolet-optical-IR photometry the light curve shows high variability right from the first observation around two days after eruption. Therefore no colour changes can be substantiated. Outburst spectra from 2016 and 1990 are very similar and are dominated by H and He lines longward of 2000 Angstrom. Interstellar reddening is found to be E(B-V) = . The super soft X-ray luminosity is lower than the Eddington luminosity and the X-ray spectra suggest the mass of the WD is larger than 1.3 M. Eclipses in the light curve suggest that the system…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · X-ray Spectroscopy and Fluorescence Analysis · Scientific Measurement and Uncertainty Evaluation
