Physical properties of superbubbles in the Antennae galaxies
arXiv:1703.02902 · doi:10.1093/mnras/stx551
Abstract
Mass outflow generated by the dynamical feedback from massive stars is currently a topic of high interest. Using a purpose-developed analysis technique, and taking full advantage of the high kinematic and angular resolution of our instrument we have detected a number of expanding superbubbles in the interacting pair of galaxies Arp 244 (NGC 4038/9) commonly known as the Antennae. We use a Fabry-Pérot interferometer GHαFaS to measure the profile of Hα in emission over the full extent of the object, except for the extended HI tails. The superbubbles are found centred on most of the brightest HII regions, especially in the overlap area of the two merging galaxies. We use measured sizes, expansion velocities and luminosities of the shells to estimate most of the physical parameters of the bubbles, including the kinetic energy of the expansion. In order to assess the validity of our results and approximations we perform a hydrodynamic simulation and manage to reproduce well our best measured superbubble with reasonable physical input assumptions. We also study the sources of ionization of the shells, finding that at the current, quite late stage of expansion, radiation from the remaining stars dominates, though the effect of supernova shocks can still be noted.
10 pages, 5 figures
References in corpus (7)
- The role of stellar feedback in the formation of galaxies
- Feedback in the Antennae Galaxies (NGC 4038/9): I. High-Resolution Infrared Spectroscopy of Winds from Super Star Clusters
- Spiral inflow feeding the nuclear starburst in M83, observed in H-alpha emission with the GHAFAS Fabry-Perot interferometer
- Two physical regimes for the Giant HII Regions and Giant Molecular Clouds in the Antennae Galaxies
- Filaments in Galactic Winds Driven by Young Stellar Clusters
- Diffuse X-ray emission from the superbubbles N 70 and N 185 in the Large Magellanic Cloud
- BUBBLY: A method for detecting and characterizing interstellar bubbles using Fabry-Perot spectroscopy
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- H Kinematics of Superbubbles and Supernova Remnants of the Dwarf galaxy NGC 4214
- Investigating Galactic Fountains in M101: Insights from Ionized, UV emissions and Neutral Gas