He II 4686 emission from the massive binary system in Car: constraints to the orbital elements and the nature of the periodic minima
arXiv:1601.03396 · doi:10.3847/0004-637X/819/2/131
Abstract
η Carinae is an extremely massive binary system in which rapid spectrum variations occur near periastron. Most notably, near periastron the He II line increases rapidly in strength, drops to a minimum value, then increases briefly before fading away. To understand this behavior, we conducted an intense spectroscopic monitoring of the He II emission line across the 2014.6 periastron passage using ground- and space-based telescopes. Comparison with previous data confirmed the overall repeatability of EW(He II ), the line radial velocities, and the timing of the minimum, though the strongest peak was systematically larger in 2014 than in 2009 by 26%. The EW(He II ) variations, combined with other measurements, yield an orbital period d. The observed variability of the EW(He II ) was reproduced by a model in which the line flux primarily arises at the apex of the wind-wind collision and scales inversely with the square of the stellar separation, if we account for the excess emission as the companion star plunges into the hot inner layers of the primary's atmosphere, and including absorption from the disturbed primary wind between the source and the observer. This model constrains the orbital inclination to -, and the longitude of periastron to -. It also suggests that periastron passage occurred on d. Our model also reproduced EW(He II ) variations from a polar view of the primary star as determined from the observed He II emission scattered off the Homunculus nebula.
The article contains 23 pages and 17 figures. It has been accepted for publication in ApJ
References in corpus (13)
- Near-Infrared Variability in the 2MASS Calibration Fields: A Search for Planetary Transit Candidates
- 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 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
- Near-infrared integral field spectroscopy of the Homunculus nebula around Eta Carinae using Gemini/CIRPASS
- 3D radiative transfer simulations of Eta Carinae's inner colliding winds - I. Ionization structure of helium at apastron
- The Orientation of the Eta Carinae Binary System
- Eta Carinae's 2014.6 Spectroscopic Event: The Extraordinary He II and N II Features
- Wind-wind collision in the eta Carinae binary system - III. The HeII 4686 line profile
- 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 (33)
- The IACOB project. V. Spectroscopic parameters of the O-type stars in the modern grid of standards for spectral classification
- Carinae's Dusty Homunculus Nebula from Near-Infrared to Submillimeter Wavelengths: Mass, Composition, and Evidence for Fading Opacity
- The fossil wind structures of Eta Carinae: changes across on 5.54-year cycle
- Distinguishing Circumstellar from Stellar Photometric Variability in Eta Carinae
- To and beyond! The He I absorption variability across the 2014.6 periastron passage of Carinae
- The variability of the BRITE-est Wolf-Rayet binary, Velorum I. Photometric and spectroscopic evidence for colliding winds
- 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
- The Wolf-Rayet + Black Hole Binary NGC 300 X-1: What is the Mass of the Black Hole?
- Competitive X-ray and Optical Cooling in the Collisionless Shocks of WR 140
- Uncovering the orbital dynamics of stars hidden inside their powerful winds: application to Carinae and RMC 140
- BRITE-Constellation reveals evidence for pulsations in the enigmatic binary Carinae
- Eta Carinae & the Homunculus: Far Infrared, Sub-millimeter Spectral Lines
- Eta Carinae's Declining Outflow Seen in the UV, 2002-2015
- The peculiar chemistry of the inner ejecta of Eta Carina
- CO, Water, and Possible Methanol in Eta Carinae Approaching Periastron
- Spectroscopic Signatures of the Vanishing Natural Coronagraph of eta Carinae
- Spatial distribution and kinematics of the molecular material associated with Carinae
- The orbital kinematics of eta Carinae over three periastra with a possible detection of the elusive secondary's motion
- First detection of silicon-bearing molecules in Car
- The X-ray properties of Eta Carinae during its 2020 X-ray minimum
- NICER X-ray Observations of Eta Carinae During its Most Recent Periastron Passage
- Carinae: high angular resolution continuum, H30 and He30 ALMA images
- 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
- A Case Study in Astronomical 3-D Printing: The Mysterious Eta Carinae
- GRAVITY chromatic imaging of Eta Car's core
- Probing cosmic ray escape from η Carinae
- Detection of very-high-energy gamma-ray emission from Eta Carinae during its 2020 periastron passage
- 3-D structures of planetary nebulae
- The orientation of Eta Carinae and the powering mechanism of intermediate luminosity optical transients (ILOTs)
- Telluric absorption lines in the ALMA spectra of Car
- The SPIRIT Telescope Initiative: six years on
- Eta Carinae: an evolving view of the central binary, its interacting winds and its foreground ejecta