Discovery of 13 New Orbital Periods for Classical Novae
Bradley E. Schaefer (Louisiana State University)

TL;DR
This paper reports 13 new orbital periods for classical novae using data from TESS, AAVSO, and archives, revealing diverse periods and phenomena that enhance understanding of nova evolution and white dwarf systems.
Contribution
The study provides the first orbital periods for 13 novae, including long and short periods, and identifies transient phenomena and a white dwarf spin period, expanding the known nova parameter space.
Findings
Nearly one-seventh of all known nova periods are newly reported.
Five novae have orbital periods exceeding one day, indicating evolved companions.
Detection of a coherent 591-second period in V407 Lup linked to white dwarf spin.
Abstract
I report new orbital periods (P) for 13 classical novae, based on light curves from TESS, AAVSO, and other public archives. These new nova periods now constitute nearly one-seventh of all known nova periods. Five of my systems have P>1 day, which doubles the number of such systems that must have evolved companion stars. (This is simply because ground-based time series have neither the coverage nor the stability required to discover these small-amplitude long periods.) V1016 Sgr has a rare P below the period gap, and suddenly becomes useful for current debates on evolution of novae. Five of the novae (FM Cir, V399 Del, V407 Lup, YZ Ret, and V549 Vel) have the orbital modulations in the tail of the eruption after the transition phase. Soon after the transition, YZ Ret shows a unique set of aperiodic diminishing oscillations, plus YZ Ret shows two highly-significant transient periods, 1.1%…
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Taxonomy
TopicsAstrophysical Phenomena and Observations
