Ultraviolet Mg II emission from fast neutral ejecta around Eta Carinae
arXiv:1907.07694 · doi:10.1093/mnras/stz1996
Abstract
We present the first images of the nebula around eta Carinae obtained with HST/WFC3, including a UV image in the F280N filter that traces MgII emission, plus contemporaneous imaging in the F336W, F658N, and F126N filters that trace near-UV continuum, [NII], and [FeII], respectively. The F336W and F658N images are consistent with previous images in these filters, and F126N shows that for the most part, [FeII] 12567 traces clumpy shocked gas seen in [NII]. The F280N image, however, reveals MgII emission from structures that have not been seen in any previous line or continuum images of eta Carinae. This image shows diffuse MgII emission immediately outside the bipolar Homunculus nebula in all directions, but with the strongest emission concentrated over the poles. The diffuse structure with prominent radial streaks, plus an anticorrelation with ionized tracers of clumpy shocked gas, leads us to suggest that this is primarily MgII resonant scattering from unshocked, neutral atomic gas. We discuss the implied structure and geometry of the MgII emission, and its relation to the Homunculus lobes and various other complex nebular structures. An order of magnitude estimate of the neutral gas mass traced by MgII is 0.02Msun, with a corresponding kinetic energy around 1e47erg. This may provide important constraints on polar mass loss in the early phases of the Great Eruption. We argue that the MgII line may be an excellent tracer of significant reservoirs of freely expanding, unshocked, and otherwise invisible neutral atomic gas in a variety of stellar outflows.
accepted by MNRAS. 15 pages, 6 figures
References in corpus (20)
- Pulsational Pair-Instability Supernovae
- SN 2006tf: Precursor Eruptions and the Optically Thick Regime of Extremely Luminous Type IIn Supernovae
- Luminous Blue Variables are Antisocial: Their Isolation Implies that they are Kicked Mass Gainers in Binary Evolution
- A Blast Wave from the 1843 Eruption of Eta Carinae
- The UV Scattering Halo of the Central Source Associated with Eta Carinae
- Light-echoes from the plateau in Eta Carinae's Great Eruption reveal a two-stage shock-powered event
- Numerical simulations of continuum-driven winds of super-Eddington stars
- Ancient eruptions of Eta Carinae: A tale written in proper motions
- The Structure of the Homunculus. II. Modeling the physical conditions in Eta Car's molecular shell
- The three-dimensional structure of the Eta Carinae Homunculus
- Exceptionally fast ejecta seen in light echoes of Eta Carinae's Great Eruption
- On the behaviour of stellar winds that exceed the photon-tiring limit
- Light Echoes from Eta Carinae's Great Eruption: Spectrophotometric Evolution and the Rapid Formation of Nitrogen-rich Molecules
- Near-infrared integral field spectroscopy of the Homunculus nebula around Eta Carinae using Gemini/CIRPASS
- Proper motions of collimated jets from intermediate-mass protostars in the Carina Nebula
- HH 666: Different kinematics from Hα and [Fe II] emission provide a missing link between jets and outflows
- A disrupted molecular torus around Eta Carinae as seen in 12CO with ALMA
- The feedback of atomic jets from embedded protostars in NGC 1333
- A moderately precise dynamical age for the Homunculus of Eta Carinae based on 13 years of HST imaging
- Dissecting a SN impostor's circumstellar medium: MUSEing about the SHAPE of eta Car's outer ejecta
Cited by in corpus (5)
- Simulating the formation of Carinae's surrounding nebula through unstable triple evolution and stellar merger-induced eruption
- Inclined jets inside a common envelope of a triple stellar system
- The Blue Supergiant Progenitor of the Supernova Imposter AT~2019krl
- First detection of silicon-bearing molecules in Car
- Luminous Blue Variables