Shock-powered light curves of luminous red novae as signatures of pre-dynamical mass loss in stellar mergers
arXiv:1705.03895 · doi:10.1093/mnras/stx1768
Abstract
Luminous red novae (LRN) are a class of optical transients believed to originate from the mergers of binary stars, or "common envelope" events. Their light curves often show secondary maxima, which cannot be explained in the previous models of thermal energy diffusion or hydrogen recombination without invoking multiple independent shell ejections. We propose that double-peaked light curves are a natural consequence of a collision between dynamically-ejected fast shell and pre-existing equatorially-focused material, which was shed from the binary over many orbits preceding the dynamical event. The fast shell expands freely in the polar directions, powering the initial optical peak through cooling envelope emission. Radiative shocks from the collision in the equatorial plane power the secondary light curve peak on the radiative diffusion timescale of the deeper layers, similar to luminous Type IIn supernovae and some classical novae. Using a detailed 1D analytic model, informed by complementary 3D hydrodynamical simulations, we show that shock-powered emission can explain the observed range of peak timescales and luminosities of the secondary peaks in LRN for realistic variations in the binary parameters and fraction of the binary mass ejected. The dense shell created by the radiative shocks in the equatorial plane provides an ideal location for dust nucleation consistent with the the inferred aspherical geometry of dust in LRN. For giant stars, the ejecta forms dust when the shock-powered luminosity is still high, which could explain the infrared transients recently discovered by Spitzer. Our results suggest that pre-dynamical mass loss is common if not ubiquitous in stellar mergers, providing insight into the instabilities responsible for driving the binary merger.
12 pages, 6 figures, submitted
References in corpus (21)
- Binary interaction dominates the evolution of massive stars
- The Evolution of Compact Binary Star Systems
- Binary star progenitors of long gamma-ray bursts
- Shell-shocked diffusion model for the light curve of SN2006gy
- A New Class of Luminous Transients and A First Census of Their Massive Stellar Progenitors
- An Intermediate Luminosity Transient in NGC300: The Eruption of a Dust-Enshrouded Massive Star
- Stellar Mergers Are Common
- The Triple-Ring Nebula around SN1987A: Fingerprint of a binary merger
- SN 2008S: A Cool Super-Eddington Wind in a Supernova Impostor
- Recombination energy in double white dwarf formation
- Gamma-ray novae as probes of relativistic particle acceleration at non-relativistic shocks
- Common envelope events with low-mass giants: understanding the transition to the slow spiral-in
- Shocks in nova outflows. I. Thermal emission
- Violent Stellar Merger Model for Transient Events
- A Luminous Red Nova in M31 and its Progenitor System
- A Young Stellar Cluster Surrounding the Peculiar Eruptive Variable V838 Monocerotis
- Evolution of the stellar-merger red nova V1309 Scorpii: SED analysis
- SN Hunt 248: a super-Eddington outburst from a massive cool hypergiant
- V838 Monocerotis: the central star and its environment a decade after outburst
- The January 2015 outburst of a red nova in M31
- Spitzer observations of V4332 Sagittarii: Detection of Alumina Dust
Cited by in corpus (59)
- Modeling Dense Star Clusters in the Milky Way and Beyond with the Cluster Catalog
- New Insights into Classical Novae
- Luminous Red Novae: population models and future prospects
- High-Energy Neutrinos and Gamma-Rays from Non-Relativistic Shock-Powered Transients
- Circumstellar Interaction Powers the Light Curves of Luminous Rapidly Evolving Optical Transients
- Bumpy Declining Light Curves Are Common in Hydrogen-poor Superluminous Supernovae
- Pre-Common-Envelope Mass Loss from Coalescing Binary Systems
- Light Curve Model for Luminous Red Novae and Inferences about the Ejecta of Stellar Mergers
- The Effect of Thermal Torques on AGN Disc Migration Traps and Gravitational Wave Populations
- On rapid binary mass transfer -- I. Physical model
- Progenitor, Precursor and Evolution of the Dusty Remnant of the Stellar Merger M31-LRN-2015
- SN 2009ip after a decade: The luminous blue variable progenitor is now gone
- Efficiently jet-powered radiation in intermediate-luminosity optical transients (ILOTS)
- The Evolution of Luminous Red Nova AT 2017jfs in NGC 4470
- Asteroseismic Fingerprints of Stellar Mergers
- Volumetric rates of Luminous Red Novae and Intermediate Luminosity Red Transients with the Zwicky Transient Facility
- The luminous red nova variety: AT 2020hat and AT 2020kog
- Prospects of gravitational-waves detections from common-envelope evolution with LISA
- Runaway Coalescence of Pre-Common-Envelope Stellar Binaries
- Observations of the luminous red nova AT 2021biy in the nearby galaxy NGC 4631
- The multi-wavelength view of shocks in the fastest nova V1674 Her
- Supernova explosions interacting with aspherical circumstellar material: implications for light curves, spectral line profiles, and polarization
- Progenitor, environment, and modelling of the interacting transient, AT 2016jbu (Gaia16cfr)
- Molecular remnant of Nova 1670 (CK Vulpeculae): I. Properties and enigmatic origin of the gas
- The Carnegie Supernova Project II. Observations of the luminous red nova AT 2014ej
- Post-dynamical inspiral phase of common envelope evolution: Binary orbit evolution and angular momentum transport
- Gap Transients Interacting with Circumstellar Medium
- Transients from the Cataclysmic Deaths of Cataclysmic Variables
- Multiple Peaks and a Long Precursor in the Type IIn Supernova 2021qqp: An Energetic Explosion in a Complex Circumstellar Environment
- Dusty, Self-obscured Transients from Stellar Coalescence
- Explaining recently studied intermediate luminosity optical transients (ILOTs) with jet powering
- The Blue Supergiant Progenitor of the Supernova Imposter AT~2019krl
- Moving-mesh radiation-hydrodynamic simulations of wind-reprocessed transients
- Panchromatic evolution of three luminous red novae: Forbidden hugs in pandemic times -- IV
- Comparison between the first and second mass eruptions from progenitors of Type IIn supernovae
- Lithium in coalesced non-compact stars
- Revisiting V1309 Sco 2008 outburst spectra. Observational evidence for theoretical modeling of stellar mergers
- Searching for the Next Galactic Luminous Red Nova
- Fermi-LAT Observations of V549 Vel 2017: a Sub-Luminous Gamma-Ray Nova?
- Rapid binary mass transfer: Circumbinary outflows and angular momentum losses
- Simulating a stellar contact binary merger -- I. Stellar models
- The effect of relativistic precession on light curves of tidal disruption events
- The circumstellar matter of type II intermediate luminosity optical transients (ILOTs)
- Luminous Blue Variables
- On the nature of the planet-powered transient event ZTF SLRN-2020
- Two-Dimensional Radiation-Hydrodynamic Simulations of Luminous Red Novae
- The luminous red nova AT 2018bwo in NGC 45 and its binary yellow supergiant progenitor
- OGLE-2002-BLG-360: a dusty anomaly among red nova remnants
- A rapidly fading star as a type II obscuring intermediate luminosity optical transient (ILOT) in a triple star system
- What determines the -ray luminosities of classical novae?
- Prospects for Observing Astrophysical Transients with GeV Neutrinos
- Multiple outflows and delayed ejections revealed by early imaging of novae
- Good things come to those who wait: Watching donor stars evolve towards a mass-transfer instability
- Hubble Space Telescope Imaging of Luminous Extragalactic Infrared Transients and Variables from the SPIRITS Survey
- VVV-WIT-13: an eruptive young star with cool molecular features
- The fate of the progenitors of luminous red novae: Infrared detection of LRNe years after the outburst
- Is the nitrogen-rich source PN K4-47 a true planetary nebula?
- Observational Signatures of Planetary Tidal Disruption Events Around Solar-Mass Stars
- Luminous Fast Blue Optical Transients and Type Ibn/Icn SNe from Wolf-Rayet/Black Hole Mergers