Empirically Constrained Predictions for Metal-Line Emission from the Circumgalactic Medium
arXiv:1607.08616 · doi:10.3847/0004-637X/827/2/148
Abstract
The circumgalactic medium (CGM) remains one of the least constrained components of galaxies and as such has significant potential for advancing galaxy formation theories. In this work, we vary the extragalactic ultraviolet background for a high-resolution cosmological simulation of a Milky Way-like galaxy and examine the effect on the absorption and emission properties of metals in the CGM. We find that a reduced quasar background brings the column density predictions into better agreement with recent data. Similarly, when the observationally derived physical properties of the gas are compared to the simulation, we find that the simulation gas is always at temperatures approximately 0.5 dex higher. Thus, similar column densities can be produced from fundamentally different gas. However, emission maps can provide complementary information to the line-of-sight column densities to better derive gas properties. From the simulations, we find that the brightest emission is less sensitive to the extragalactic background and that it closely follows the fundamental filamentary structure of the halo. This becomes increasingly true as the galaxy evolves from z=1 to z=0 and the majority of the gas transitions to a hotter, more diffuse phase. For the brightest ions (CIII, CIV, OVI), detectable emission can extend as far as 120 kpc at z=0. Finally, resolution is a limiting factor for the conclusions we can draw from emission observations but with moderate resolution and reasonable detection limits, upcoming instrumentation should place constraints on the physical properties of the CGM.
24 pages, 14 figures, accepted for publication int he Astrophysical Journal
References in corpus (17)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- A unified model for AGN feedback in cosmological simulations of structure formation
- Forming Disk Galaxies in Lambda CDM Simulations
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- The impact of feedback on cosmological gas accretion
- Metal Cooling in Simulations of Cosmic Structure Formation
- Metal-enriched, sub-kiloparsec gas clumps in the circumgalactic medium of a faint z = 2.5 galaxy
- The Impact of Galactic Feedback on the Circumgalactic Medium
- The Photon Underproduction Crisis
- A STIS Survey for OVI Absorption Systems at 0.12 < z < 0.5 I.: The Statistical Properties of Ionized Gas
- Cosmological simulations of galaxy formation with cosmic rays
- The enrichment history of cosmic metals
- On the Diffuse Lyman-alpha Halo Around Lyman-alpha Emitting Galaxies
- A Deep Narrowband Imaging Search for CIV and He II Emission from Ly Blobs
- Detection of hot, metal-enriched outflowing gas around 2.3 star-forming galaxies in the Keck Baryonic Structure Survey
Cited by in corpus (8)
- The Circumgalactic Medium
- Galaxy mergers moulding the circum-galactic medium - I. The impact of a major merger
- The cold circumgalactic medium in emission: MgII halos in TNG50
- Metal line emission from galaxy haloes at z~1
- The diversity of the circumgalactic medium around z = 0 Milky Way-mass galaxies from the Auriga simulations
- Simulating Gas Inflow at the Disk-Halo Interface
- The environments and hosts of metal absorption at z>5
- Ultraviolet Perspectives on Diffuse Gas in the Largest Cosmic Structures