Shell formation and star formation in superbubble DEM 192
arXiv:astro-ph/9806009 · doi:10.1086/300498
Abstract
Was star formation in the OB associations, LH 51 and LH 54, triggered by the growth of the superbubble DEM 192? To examine this possibility, we investigate the stellar contents and star formation history, and model the evolution of the shell. H-R diagrams constructed from UBV photometry and spectral classifications indicate highly coeval star formation, with the entire massive star population having an age of ~< 2-3 Myr. However, LH 54 is constrained to an age of ~3 Myr by the presence of a WR star, and the IMF for LH 51 suggests a lower-mass limit implying an age of 1-2 Myr. There is no evidence of an earlier stellar population to create the superbubble, but the modeled shell kinematics are consistent with an origin due to the strongest stellar winds of LH 54. It might therefore be possible that LH 54 created the superbubble, which in turn may have triggered the creation of LH 51. Within the errors, the spatial distribution of stellar masses and IMF appear uniform within the associations. We reinvestigate the estimates for stellar wind power L_w(t), during the H-burning phase, and note that revised mass-loss rates yield a significantly different form for L_w(t), and may affect stellar evolution timescales. We also model superbubble expansion into an ambient medium with a sudden, discontinuous drop in density, and find that this can easily reproduce the anomalously high shell expansion velocities seen in many superbubbles.
18 pages, 12 figures, AASTeX; Figure 1 bitmapped. Accepted to AJ. Table of Contents and preprint, including hi-resolution version of Figure 1, available at: http://www.ast.cam.ac.uk/~oey/oeypubs.html
Cited by in corpus (27)
- Binarity in Carbon-Enhanced Metal-Poor stars
- A Stellar Wind Bubble Coincident with the Anomalous X-ray Pulsar 1E 1048.1-5937: Are Magnetars Formed From Massive Progenitors?
- Hierarchical Triggering of Star Formation by Superbubbles in W3/W4
- Galactic porosity and a star formation threshold for the escape of ionising radiation from galaxies
- On the shape of the spectrum of cosmic-rays accelerated inside superbubbles
- An Empirical Test and Calibration of H II Region Diagnostics
- A Spitzer Space Telescope far-infrared spectral atlas of compact sources in the Magellanic Clouds. I. The Large Magellanic Cloud
- Calibration of Nebular Emission-Line Diagnostics: I. Stellar Effective Temperatures
- Linked evolution of gas and star formation in galaxies over cosmic history
- X-Shooting ULLYSES: massive stars at low metallicity. I. Project Description
- Ambient Interstellar Pressure and Superbubble Evolution
- Energy Crisis in the Superbubble DEM L 192 (N 51D)
- The role of magnetic fields in the structure and interaction of supershells
- Protostars, Dust Globules, and a Herbig-Haro Object in the LMC Superbubble N51D
- The HI Environment of Three Superbubbles in the Large Magellanic Cloud
- A Cosmic Ray Resolution to the Superbubble Energy-Crisis
- Structured star formation in the Magellanic inter-Cloud region
- Searching for Diffuse Nonthermal X-Rays from the Superbubbles N11 and N51D in the Large Magellanic Cloud
- On the recent history of star formation in the BCD galaxy VII Zw403
- Dynamical Masses for the Large Magellanic Cloud Massive Binary System [L72] LH 54-425
- Wind-Driven Gas Networks and Star Formation in Galaxies: Reaction-Advection Hydrodynamic Simulations
- Superbubble evolution including the star-forming clouds: Is it possible to reconcile LMC observations with model predictions?
- A very massive spectroscopic binary in the LH 54 OB association in the LMC
- X-Shooting ULLYSES: Massive Stars at Low Metallicity: XI. Pipeline-determined Physical Properties of Magellanic Cloud OB Stars
- Superbubble Activity in Star-Forming Galaxies
- Dust Emission from Evolved and Unevolved HII Regions in the Large Magellanic Cloud
- Towards Resolving the Evolution of Multi-Supernova Superbubbles