Absorption systems at as a probe of the circum galactic medium: a probabilistic approach
arXiv:1706.06123 · doi:10.1093/mnras/sty1283
Abstract
We characterize the properties of the intergalactic medium (IGM) around a sample of galaxies extracted from state-of-the-art hydrodynamical simulations of structure formation in a cosmological volume of 25 Mpc comoving at . The simulations are based on two different subresolution schemes for star formation and supernova feedback: the MUlti-Phase Particle Integrator (MUPPI) scheme and the Effective Model. We develop a quantitative and probabilistic analysis based on the apparent optical depth method of the properties of the absorbers as a function of impact parameter from their nearby galaxies: in such a way we probe different environments from circumgalactic medium to low-density filaments. Absorbers' properties are then compared with a spectroscopic observational data set obtained from high-resolution quasar spectra. Our main focus is on the N-N relation around simulated galaxies: the results obtained with MUPPI and the Effective model are remarkably similar, with small differences only confined to regions at impact parameters . Using $\mbox{C IV}$ as a tracer of the metallicity, we obtain evidence that the observed metal absorption systems have the highest probability to be confined in a region of 150-400 kpc around galaxies. Near-filament environments have instead metallicities too low to be probed by present-day telescopes, but could be probed by future spectroscopical studies. Finally we compute $\mbox{C IV}$ covering fractions which are in agreement with observational data.
25 pages, 20 figures
References in corpus (19)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Cosmological Simulations of Intergalactic Medium Enrichment from Galactic Outflows
- The Role of Pressure in GMC Formation II: The H_2 - Pressure Relation
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- The 2013 Release of Cloudy
- The COS-Dwarfs Survey: The Carbon Reservoir Around sub-L* Galaxies
- Metal-line absorption around 2.4 star-forming galaxies in the Keck Baryonic Structure Survey
- MUFASA: Galaxy star formation, gas, and metal properties across cosmic time
- An improved measurement of the flux distribution of the Ly-alpha forest in QSO absorption spectra: the effect of continuum fitting, metal contamination and noise properties
- Connection Between the Circumgalactic Medium and the Interstellar Medium of Galaxies: Results from the COS-GASS Survey
- The Impact of Galactic Feedback on the Circumgalactic Medium
- Detection of hot, metal-enriched outflowing gas around 2.3 star-forming galaxies in the Keck Baryonic Structure Survey
- Metals in the z~3 intergalactic medium: results from an ultra-high signal-to-noise ratio UVES quasar spectrum
- Observations of metals in the intergalactic medium and comparison to the EAGLE simulations
- Galactic outflow and diffuse gas properties at z>=1 using different baryonic feedback models
- The circum-galactic medium of quasars: CIV absorption systems
- Triple-ionised carbon associated with the low-density neutral hydrogen gas at 1.7 < z < 3.3: the integrated N(HI)-N(CIV) relation
- Panchromatic Spectral Energy Distributions of simulated galaxies: results at redshift