Direct Insights into Observational Absorption Line Analysis Methods of the Circumgalactic Medium Using Cosmological Simulations
arXiv:1409.0914 · doi:10.1088/0004-637X/802/1/10
Abstract
We study the circumgalactic medium (CGM) of a z=0.54 simulated dwarf galaxy using hydroART simulations. We present our analysis methods, which emulate observations, including objective absorption line detection, apparent optical depth (AOD) measurements, Voigt profile (VP) decomposition, and ionization modeling. By comparing the inferred CGM gas properties from the absorption lines directly to the gas selected by low ionization HI and MgII, and by higher ionization CIV and OVI absorption, we examine how well observational analysis methods recover the "true" properties of CGM gas. In this dwarf galaxy, low ionization gas arises in sub-kiloparsec "cloud" structures, but high ionization gas arises in multiple extended structures spread over 100 kpc; due to complex velocity fields, highly separated structures give rise to absorption at similar velocities. We show that AOD and VP analysis fails to accurately characterize the spatial, kinematic, and thermal conditions of high ionization gas. We find that HI absorption selected gas and OVI absorption gas arise in totally distinct physical gas structures, calling into question current observational techniques employed to infer metallicities and the total mass of "warm-hot" CGM gas. We present a method to determine whether CIV and OVI absorbing gas is photo or collisionally ionized and whether the assumption of ionization equilibrium is sound. As we discuss, these and additional findings have strong implications for how accurately currently employed observational absorption line methods recover the true gas properties, and ultimately, our ability to understand the CGM and its role in galaxy evolution.
18 pages, 7 figures, revised version accepted to ApJ Jan 2015
References in corpus (12)
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Slow Star Formation in Dense Gas: Evidence and Implications
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- The role of stellar feedback in the formation of galaxies
- Characterizing the Circumgalactic Medium of Nearby Galaxies with HST/COS and HST/STIS Absorption-Line Spectroscopy
- The COS-Dwarfs Survey: The Carbon Reservoir Around sub-L* Galaxies
- The COS/UVES Absorption Survey of the Magellanic Stream. III: Ionization, Total Mass, and Inflow Rate onto the Milky Way
- The Nature and Origin of Low-Redshift O VI Absorbers
- Metal-enriched, sub-kiloparsec gas clumps in the circumgalactic medium of a faint z = 2.5 galaxy
- Early formation of massive, compact, spheroidal galaxies with classical profiles by violent disc instability or mergers
- Hot Halos around High Redshift Protogalaxies: Observations of O VI and N V Absorption in Damped Lyman Alpha systems
- C IV absorption in damped and sub-damped Lyman-alpha systems: correlations with metallicity and implications for galactic winds at z~2-3
Cited by in corpus (18)
- The Circumgalactic Medium
- The Cosmic Baryon and Metal Cycles
- The COS-Halos Survey: Origins of the Highly Ionized Circumgalactic Medium of Star-Forming Galaxies
- Host galaxies of luminous z0.6 quasars: Major mergers are not prevalent at the highest AGN luminosities
- The Relationship Between Galaxy ISM and Circumgalactic Gas Metallicities
- The Highly Ionized Circumgalactic Medium is Kinematically Uniform Around Galaxies
- Lyman-αabsorption beyond the disk of simulated spiral galaxies
- Time-Dependent Cooling in Photoionized Plasma
- Cloud-by-cloud, multiphase, Bayesian modeling: Application to four weak, low ionization absorbers
- A Complex Multiphase DLA Associated with a Compact Group at z=2.431 Traces Accretion, Outflows, and Tidal Streams
- Using cosmological simulations and synthetic absorption spectra to assess the accuracy of observationally derived CGM metallicities
- Modeling Photoionized Turbulent Material in the Circumgalactic Medium II: Effect of Turbulence within a Stratified Medium
- Physical Conditions of Five O VI Absorption Systems Towards PG
- Metal content of the circumgalactic medium around star-forming galaxies at z 2.6 as revealed by the VIMOS Ultra-Deep Survey
- Properties of the circumgalactic medium in simulations compared to observations
- Probing Large Galaxy Halos at with Automated -Absorption Matching
- Modeling Photoionized Turbulent Material in the Circumgalactic Medium III: Effects of Co-rotation and Magnetic Fields
- Solar-Metallicity Gas in the Extended Halo of a Galaxy at