The fossil wind structures of Eta Carinae: changes across on 5.54-year cycle
arXiv:1608.06193 · doi:10.1093/mnras/stw1829
Abstract
Eta Carinae, the closest, active, massive binary containing a highly unstable LBV, exhibits expanding, compressed wind shells, seen in emission, that are spatially and spectrally resolved by \hst/\stis. Starting in June 2009, these structures were mapped across its 5.54-year, highly elliptical, binary orbit to follow temporal changes in the light of [Fe~III] 4659Å and [Fe~II] 4815Å. The emissions trace portions of fossil wind-shells, that were formed by wind-wind interactions across each cycle. Over the high-ionization state, dense arcs, photo-ionized by far ultraviolet radiation from the hot secondary, are seen in [Fe~III]. Other arcs, ionized by mid-ultraviolet radiation from the primary star, are seen in [Fe II]. The [Fe III] structures tend to be interior to [Fe II] structures that trace extensive, less disturbed primary wind. During the brief periastron passage when the secondary plunges deep into the primary's extremely dense wind, on the far side of primary star, high-ionization [Fe III] structures fade and reappear in [Fe II]. Multiple fossil wind-structures were traced across the 5.7-year monitoring interval. The strong similarity of the expanding [Fe II] shells suggests that the wind and photo-ionization properties of the massive binary have not changed substantially from one orbit to the next over the past several orbital cycles. These observations trace structures that can be used to test three-dimensional hydrodynamical and radiative-transfer models of massive, interacting winds. They also provide a baseline for following future changes in Eta Carinae, especially of its winds and photoionization properties.
28 pages accepted MNRAS July 22 2016
References in corpus (13)
- Chemical evolution of galaxies. I. A composition-dependent SPH model for chemical evolution and cooling
- The UV Scattering Halo of the Central Source Associated with Eta Carinae
- A multispectral view of the periodic events in eta Carinae
- Modeling the RXTE light curve of Carinae from a 3-D SPH simulation of its binary wind collision
- The Chrysalis Opens? Photometry from the Eta Carinae HST Treasury Project, 2002-2006
- The three-dimensional structure of the Eta Carinae Homunculus
- Eta Carinae's 2014.6 Spectroscopic Event: Clues to the Long-term Recovery from its Great Eruption
- 3D radiative transfer simulations of Eta Carinae's inner colliding winds - I. Ionization structure of helium at apastron
- Long-Term Optical Monitoring of Eta Carinae. Multiband light curves for a complete orbital period
- Carinae Baby Homunculus Uncovered by ALMA
- Eta Carinae's 2014.6 Spectroscopic Event: The Extraordinary He II and N II Features
- 3D Radiative Transfer in Carinae: Application of the SimpleX Algorithm to 3D SPH Simulations of Binary Colliding Winds
- 3D radiative transfer simulations of Eta Carinae's inner colliding winds - II: Ionization structure of helium at periastron
Cited by in corpus (14)
- Carinae's Dusty Homunculus Nebula from Near-Infrared to Submillimeter Wavelengths: Mass, Composition, and Evidence for Fading Opacity
- Distinguishing Circumstellar from Stellar Photometric Variability in Eta Carinae
- A disrupted molecular torus around Eta Carinae as seen in 12CO with ALMA
- VLTI-AMBER velocity-resolved aperture-synthesis imaging of Eta Carinae with a spectral resolution of 12000. Studies of the primary star wind and innermost wind-wind collision
- BRITE-Constellation reveals evidence for pulsations in the enigmatic binary Carinae
- A moderately precise dynamical age for the Homunculus of Eta Carinae based on 13 years of HST imaging
- Eta Carinae & the Homunculus: Far Infrared, Sub-millimeter Spectral Lines
- Spectroscopic Signatures of the Vanishing Natural Coronagraph of eta Carinae
- First detection of silicon-bearing molecules in Car
- Changes in the Na D Absorption Components of Carinae Provide Clues on the Location of the Dissipating Central Occulter
- On the changes in the physical properties of the ionized region around the Weigelt structures in Eta Carinae over the 5.54-yr spectroscopic cycle
- Carinae: high angular resolution continuum, H30 and He30 ALMA images
- Eta Carinae: an evolving view of the central binary, its interacting winds and its foreground ejecta
- Long-term evolution in ionization of ejecta illuminated by Eta Carinae