On the optical transients from double white-dwarf mergers
arXiv:2310.06655 · doi:10.3847/1538-4357/ad022f
Abstract
Double white-dwarf (DWD) mergers are relevant astrophysical sources expected to produce massive, highly-magnetized WDs, supernovae (SNe) Ia, and neutron stars (NSs). Although they are expected to be numerous sources in the sky, their detection has evaded the most advanced transient surveys. This article characterizes the optical transient expected from DWD mergers in which the central remnant is a stable (sub-Chandrasekhar) WD. We show that the expansion and cooling of the merger's dynamical ejecta lead to an optical emission peaking at - d post-merger, with luminosities of - erg s. We present simulations of the light-curves, spectra, and the color evolution of the transient. We show that these properties, together with the estimated rate of mergers, are consistent with the absence of detection, e.g., by The Zwicky Transient Facility (ZTF). More importantly, we show that the Legacy Survey of Space and Time (LSST) of the Vera C. Rubin Observatory will likely detect a few/several hundred per year, opening a new window to the physics of WDs, NSs, and SN Ia.
Accepted for publication in The Astrophysical Journal
References in corpus (23)
- Rapidly-Evolving and Luminous Transients from Pan-STARRS1
- Magnetic White Dwarfs
- The 2008 Luminous Optical Transient in the Nearby Galaxy NGC 300
- An Intermediate Luminosity Transient in NGC300: The Eruption of a Dust-Enshrouded Massive Star
- The Koala: A Fast Blue Optical Transient with Luminous Radio Emission from a Starburst Dwarf Galaxy at
- A highly magnetised and rapidly rotating white dwarf as small as the Moon
- The LISA verification binaries
- The Viscous Evolution of White Dwarf Merger Remnants
- Two New Calcium-Rich Gap Transients in Group and Cluster Environments
- Spectral classification of the 100 pc white dwarf population from Gaia-DR3 and the Virtual Observatory
- The Merger Fraction of Ultramassive White Dwarfs
- A possible evolutionary scenario of highly magnetized super-Chandrasekhar white dwarfs: progenitors of peculiar type Ia supernovae
- The binary fraction, separation distribution, and merger rate of white dwarfs from SPY
- Neutrino Oscillations Within the Induced Gravitational Collapse Paradigm of Long Gamma-Ray Bursts
- Photometric follow-up of 43 new eclipsing white dwarf plus main-sequence binaries from the ZTF survey
- Anisotropic magnetized white dwarfs: Unifying under- and over-luminous peculiar and standard type Ia supernovae
- Gravitational waves from fast-spinning white dwarfs
- The White Dwarf Binary Pathways Survey -- IX. Three long period white dwarf plus subgiant binaries
- WD J004917.14252556.81, the Most Massive Pulsating White Dwarf
- Thermal X-ray emission from massive, fast rotating, highly magnetized white dwarfs
- On the nature of some SGRs and AXPs as rotation-powered neutron stars
- Orbital decay of double white dwarfs: beyond gravitational wave radiation effects
- A magnetic white-dwarf accretion model for the anomalous X-ray pulsar 4U 0142+61