Bottling the Champagne: Dynamics and Radiation Trapping of Wind-Driven Bubbles around Massive Stars
arXiv:2111.03399 · doi:10.1093/mnras/stab3245
Abstract
In this paper we make predictions for the behaviour of wind bubbles around young massive stars using analytic theory. We do this in order to determine why there is a discrepancy between theoretical models that predict that winds should play a secondary role to photoionisation in the dynamics of HII regions, and observations of young HII regions that seem to suggest a driving role for winds. In particular, regions such as M42 in Orion have neutral hydrogen shells, suggesting that the ionising radiation is trapped closer to the star. We first derive formulae for wind bubble evolution in non-uniform density fields, focusing on singular isothermal sphere density fields with a power law index of -2. We find that a classical "Weaver"-like expansion velocity becomes constant in such a density distribution. We then calculate the structure of the photoionised shell around such wind bubbles, and determine at what point the mass in the shell cannot absorb all of the ionising photons emitted by the star, causing an "overflow" of ionising radiation. We also estimate perturbations from cooling, gravity, magnetic fields and instabilities, all of which we argue are secondary effects for the conditions studied here. Our wind-driven model provides a consistent explanation for the behaviour of M42 to within the errors given by observational studies. We find that in relatively denser molecular cloud environments \around single young stellar sources, champagne flows are unlikely until the wind shell breaks up due to turbulence or clumping in the cloud.
17 pages, 10 figures, published in MNRAS
References in corpus (8)
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- The Dynamics of Radiation Pressure-Dominated HII Regions
- Before the first supernova: combined effects of HII regions and winds on molecular clouds
- Million-Degree Plasma Pervading the Extended Orion Nebula
- Gone With the Wind: Where is the Missing Stellar Wind Energy from Massive Star Clusters?
- Expanding bubbles in Orion A: [CII] observations of M42, M43, and NGC 1977
- Structure and Expansion Law of HII Regions in structured Molecular Clouds
- On the impact of radiation pressure on the dynamics and inner structure of dusty wind-driven shells
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- The Energy and Dynamics of Trapped Radiative Feedback with Stellar Winds
- The Neutral Atomic Hydrogen in the solar neighborhood (NeAtHood) project I. Ghost in the shell: Neutral atomic hydrogen in the extended Orion nebula
- The signature of large scale turbulence driving on the structure of the interstellar medium
- Influence of protostellar jets and HII regions on the formation and evolution of stellar clusters