A Model for the 19th Century Eruption of Eta Carinae: CSM Interaction Like a Scaled-Down Type IIn Supernova
arXiv:1209.6155 · doi:10.1093/mnras/sts508
Abstract
This paper proposes a simple model for the 19th century eruption of Eta Carinae that consists of two components: (1) a strong wind (MdotM=0.33 Msun/yr; v=200 km/s), blowing for 30 years, followed by (2) a 1e50 erg explosion in 1844. The ensuing collision between the fast ejecta and the CSM causes an increase in brightness observed at the end of 1844, followed by a sustained high-luminosity phase lasting for 10-15 years that matches the historical light curve. The emergent luminosity is powered by CSM interaction, analogous to the process in luminous Type IIn supernovae, except with 10 times lower explosion energy and at slower speeds (causing a longer duration and lower emergent luminosity). Such an explosive event provides a natural explanation for the light curve evolution, but also accounts for a number of puzzling attributes of the Homunculus nebula: (1) rough equipartition of total radiated and kinetic energy, (2) the double-shell structure of the Homunculus, (3) the apparent single age and Hubble-like flow resulting from the thin swept-up shell, (4) the complex mottled appearance of the polar lobes in HST images, arising from Raleigh-Taylor or Vishniac instabilities, (5) efficient and rapid dust formation, as seen in Type IIn supernovae, and (6) the fast (5000 km/s) material outside the Homunculus, arising from the acceleration of the forward shock upon exiting the dense CSM. In principle, the bipolar shape has already been explained in earlier studies of interacting winds, except that here the CSM interaction occurs over only 10 years, producing a thin shell with the resulting structures then frozen-in to the expanding bipolar nebula. This self-consistent picture has a number of implications for other eruptive transients, many of which may also be powered by CSM interaction.
17 pages, 5 figures, revised after referee report
References in corpus (17)
- Physical Properties of Wolf-Rayet Stars
- Pulsational pair instability as an explanation for the most luminous supernovae
- SN 2006gy: An extremely luminous supernova in the galaxy NGC 1260
- SN 2006tf: Precursor Eruptions and the Optically Thick Regime of Extremely Luminous Type IIn Supernovae
- Shell-shocked diffusion model for the light curve of SN2006gy
- SN 1994W: An Interacting Supernova or Two Interacting Shells?
- SN 2011ht: Confirming a Class of Interacting Supernovae with Plateau Light Curves (Type IIn-P)
- Numerical models of collisions between core-collapse supernovae and circumstellar shells
- A Blast Wave from the 1843 Eruption of Eta Carinae
- SN 2009kn - the twin of the Type IIn supernova 1994W
- Numerical simulations of continuum-driven winds of super-Eddington stars
- The Structure of the Homunculus. II. Modeling the physical conditions in Eta Car's molecular shell
- On the behaviour of stellar winds that exceed the photon-tiring limit
- The Structure of the Homunculus. III. Forming a Disk and Bipolar Lobes in a Rotating Surface Explosion
- The stability of stratified, rotating systems and the generation of vorticity in the Sun
- Submillimetre Emission from Eta Carinae
- On continuum driven winds from rotating stars
Cited by in corpus (51)
- Mass Loss: Its Effect on the Evolution and Fate of High-Mass Stars
- Pulsational Pair-Instability Supernovae
- Dynamics of Dusty Radiation Pressure Driven Shells and Clouds: Fast Outflows from Galaxies, Star Clusters, Massive Stars, and AGN
- The evolution of rotating very massive stars with LMC composition
- PTF11iqb: Cool supergiant mass loss that bridges the gap between Type IIn and normal supernovae
- SN 2009ip and SN 2010mc: Core-collapse Type IIn supernovae arising from blue supergiants
- The Crab Nebula and the class of Type IIn-P supernovae caused by sub-energetic electron capture explosions
- Shock-powered light curves of luminous red novae as signatures of pre-dynamical mass loss in stellar mergers
- New Prospects for Detecting High-Energy Neutrinos from Nearby Supernovae
- Theoretical Models of Optical Transients. I. A Broad Exploration of the Duration-Luminosity Phase Space
- Light-echoes from the plateau in Eta Carinae's Great Eruption reveal a two-stage shock-powered event
- Was the nineteenth century giant eruption of Eta Carinae a merger event in a triple system?
- High-Energy Emission from Interacting Supernovae: New Constraints on Cosmic-Ray Acceleration in Dense Circumstellar Environments
- Simulating the formation of Carinae's surrounding nebula through unstable triple evolution and stellar merger-induced eruption
- SN Hunt 248: a super-Eddington outburst from a massive cool hypergiant
- Ultra Long Gamma-Ray Bursts from the collapse of Blue Super Giant stars: an end-to-end simulation
- PTF 13efv - An outburst 500 days prior to the SNHunt 275 explosion and its radiative efficiency
- Hydrodynamical simulations and similarity relations for eruptive mass loss from massive stars
- The Carnegie Supernova Project II. The shock wave revealed through the fog: The strongly interacting Type IIn SN 2013L
- Constraints on Type IIn Supernova Progenitor Outbursts from the Lick Observatory Supernova Search
- The three-dimensional structure of the Eta Carinae Homunculus
- The Persistent Eruption of UGC~2773-OT: Finally, a Decade-Long Extragalactic Eta Carinae Analog
- Exceptionally fast ejecta seen in light echoes of Eta Carinae's Great Eruption
- Shell-Shocked: The Interstellar Medium Near Cygnus X-1
- Light Echoes from Eta Carinae's Great Eruption: Spectrophotometric Evolution and the Rapid Formation of Nitrogen-rich Molecules
- Recovery from Giant Eruptions in Very Massive Stars
- Supernova explosions interacting with aspherical circumstellar material: implications for light curves, spectral line profiles, and polarization
- Oblique Shock Breakout in Supernovae and Gamma-Ray Bursts: II. Numerical Solutions For Non-Relativistic Pattern Speeds
- iPTF14hls as a variable hyper-wind from a very massive star
- A moderately precise dynamical age for the Homunculus of Eta Carinae based on 13 years of HST imaging
- SN 2021adxl: A luminous nearby interacting supernova in an extremely low metallicity environment
- Unveiling the Nature of SN 2011fh: a Young and Massive Star Gives Rise to a Luminous SN 2009ip-like Event
- The Energy Sources of Double-peaked superluminous supernova PS1-12cil and luminous supernova SN 2012aa
- The Exceptional X-ray Evolution of SN1996cr in High Resolution
- Finding Car Analogs in Nearby Galaxies Using Spitzer: II. Identification of An Emerging Class of Extragalactic Self-Obscured Stars
- Fast Ejecta Resulted from Jet-Wind Interaction in the Great Eruption of Eta Carinae
- The canonical Luminous Blue Variable AG Car and its neighbor Hen 3-519 are much closer than previously assumed
- Luminous Blue Variables
- First detection of silicon-bearing molecules in Car
- A massive nebula around the Luminous Blue Variable star RMC143 revealed by ALMA
- Ultraviolet Mg II emission from fast neutral ejecta around Eta Carinae
- Multiple giant eruptions and X-ray emission in the recoiling AGN/LBV candidate SDSS1133
- Detecting High-Energy Neutrinos from Galactic Supernovae with ATLAS
- Numerical simulations of wind-driven protoplanetary nebulae. I. near-infrared emission
- A Case Study in Astronomical 3-D Printing: The Mysterious Eta Carinae
- Numerical simulations of the 1840s great eruption of Carinae: I. Revisiting the explosion scenario
- Observed Consequences of Presupernova Instability in Very Massive Stars
- Pulsation and Mass Loss Across the HR Diagram: From OB stars to Cepheids to Red Supergiants
- Millimetre continuum from LBV stars and their environs. NIKA2 observations and Virtual Observatory data
- On Linear and Nonlinear Acoustics in Stratified, Variable-Area Ducts and Atmospheres, and Lighthill's Proposition
- When Stars Mimic Monsters: Spectral Evidence for an Carinae-like Giant Eruption in SBS 0335052 E