Light Curve Analysis of Neon Novae
Izumi Hachisu (The University of Tokyo), Mariko Kato (Keio University)

TL;DR
This study analyzes light curves of five neon novae to determine their white dwarf masses and distances, revealing details about their emission contributions and discussing the MMRD relation based on a universal decline law.
Contribution
It provides new estimates of WD masses and distances for neon novae using theoretical light curve modeling and compares emission contributions, enhancing understanding of nova evolution.
Findings
WD masses range from 0.82 to 1.28 M_sun.
Photospheric emission varies among novae, often minimal.
Free-free emission dominates in some novae spectra.
Abstract
We analyzed light curves of five neon novae, QU Vul, V351 Pup, V382 Vel, V693 CrA, and V1974 Cyg, and determined their white dwarf (WD) masses and distance moduli on the basis of theoretical light curves composed of free-free and photospheric emission. For QU Vul, we obtained a distance of d~2.4 kpc, reddening of E(B-V)~0.55, and WD mass of M_WD=0.82-0.96 M_sun. This suggests that an oxygen-neon WD lost a mass of more than ~0.1 M_sun since its birth. For V351 Pup, we obtained d~5.5 kpc, E(B-V)~0.45, and M_WD=0.98-1.1 M_sun. For V382 Vel, we obtained d~1.6 kpc, E(B-V)~0.15, and M_WD=1.13-1.28 M_sun. For V693 CrA, we obtained d~7.1 kpc, E(B-V)~0.05, and M_WD=1.15-1.25 M_sun. For V1974 Cyg, we obtained d~1.8 kpc, E(B-V)~0.30, and M_WD=0.95-1.1 M_sun. For comparison, we added the carbon-oxygen nova V1668 Cyg to our analysis and obtained d~5.4 kpc, E(B-V)~0.30, and M_WD=0.98-1.1 M_sun. In QU…
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