Constraints on galactic wind models
arXiv:1604.05518 · doi:10.1093/mnras/stw1460
Abstract
Observational implications are derived for two standard models of supernovae-driven galactic winds: a freely expanding steady-state wind and a wind sourced by a self-similarly expanding superbubble including thermal heat conduction. It is shown that, for the steady-state wind, matching the measured correlation between the soft x-ray luminosity and star formation rate of starburst galaxies is equivalent to producing a scaled wind mass-loading factor relative to the star-formation rate of 0.5 - 3, in agreement with the amount inferred from metal absorption line measurements. The match requires the asymptotic wind velocity v_inf to scale with the star formation rate SFR (in solar masses per year) approximately as v_inf ~ (700 - 1000) km/s SFR^{1/6}. The corresponding mass injection rate is close to the amount naturally provided by thermal evaporation from the wall of a superbubble in a galactic disc, suggesting thermal evaporation may be a major source of mass-loading. The predicted mass-loading factors from thermal evaporation within the galactic disc alone, however, are somewhat smaller, 0.2 - 2, so that a further contribution from cloud ablation or evaporation may be required. Both models may account for the 1.4GHz luminosity of unresolved radio sources within starburst galaxies for plausible parameters describing the distribution of relativistic electrons. Further observational tests to distinguish the models are suggested.
16 pages, 8 figures; modified version of submission to MNRAS
References in corpus (6)
- Theory of Star Formation
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- The 2013 Release of Cloudy
- Magnetized Gas Clouds can Survive Acceleration by a Hot Wind
- The Launching of Cold Clouds by Galaxy Outflows I: Hydrodynamic Interactions with Radiative Cooling
- A Superbubble Feedback Model for Galaxy Simulations
Cited by in corpus (8)
- Implications of the large OVI columns around low-redshift galaxies
- Galactic Outflows, Star Formation Histories, and Timescales in Starburst Dwarf Galaxies from STARBIRDS
- Diffuse X-ray-emitting Gas in Major Mergers
- Gas around galaxy haloes - III: hydrogen absorption signatures around galaxies and QSOs in the Sherwood simulation suite
- The Hot Gas Exhaust of Starburst Engines in Mergers: Testing Models of Stellar Feedback and Star Formation Regulation
- Charge exchange emission and cold clumps in multi-phase galactic outflows
- Galactic wind X-ray heating of the intergalactic medium during the Epoch of Reionization
- The SAMI Galaxy Survey: understanding observations of large-scale outflows at low redshift with EAGLE simulations