The X-factor in Galaxies: I. Dependence on Environment and Scale
arXiv:1112.1732 · doi:10.1088/0004-637X/747/2/124
Abstract
Characterizing the conversion factor between CO emission and column density of molecular hydrogen, X_CO, is crucial in studying the gaseous content of galaxies, its evolution, and relation to star formation. In most cases the conversion factor is assumed to be close to that of giant molecular clouds (GMCs) in the Milky Way, except possibly for mergers and star-bursting galaxies. However, there are physical grounds to expect that it should also depend on the gas metallicity, surface density, and strength of the interstellar radiation field. The XCO factor may also depend on the scale on which CO emission is averaged due to effects of limited resolution. We study the dependence of X_CO on gas properties and averaging scale using a model that is based on a combination of results of sub-pc scale magneto-hydrodynamic simulations and on the gas distribution from self-consistent cosmological simulations of galaxy formation. Our model predicts a value of X_CO that is consistent with the Galactic value for interstellar medium conditions typical for the Milky Way. For such conditions the predicted X_CO varies by only a factor of two for gas surfaced densities in the range \sim 50 - 500 M_sun / pc^2. However, the model also predicts that more generally on the scale of GMCs, X_CO is a strong function of metallicity, and depends on the column density and the interstellar UV flux. We show explicitly that neglecting these dependencies in observational estimates can strongly bias the inferred distribution of H2 column densities of molecular clouds to have a narrower and offset range compared to the true distribution. We find that when averaged on \sim kpc scales the X-factor depends only weakly on radiation field and column density, but is still a strong function of metallicity. The predicted metallicity dependence can be approximated as X_CO \sim Z^{-γ} with γ ~ 0.5 - 0.8.
23 pages, 14 figures, revised version following referee report, APJ submitted
References in corpus (12)
- Dust Masses, PAH Abundances, and Starlight Intensities in the SINGS Galaxy Sample
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- COLD GASS, an IRAM Legacy Survey of Molecular Gas in Massive Galaxies: II. The non-universality of the Molecular Gas Depletion Timescale
- CO Isotopologues in the Perseus Molecular Cloud Complex: the X-Factor and Regional Variations
- The Dynamics of Radiation Pressure-Dominated HII Regions
- Environmental Dependence of the Kennicutt-Schmidt Relation in Galaxies
- The Atomic to Molecular Transition in Galaxies. I: An Analytic Approximation for Photodissociation Fronts in Finite Clouds
- The Global Evolution of Giant Molecular Clouds. I: Model Formulation and Quasi-Equilibrium Behavior
- Six Myths on the Virial Theorem for Interstellar Clouds
- How Universal is the SFR - H2 Relation?
- Can Protostellar Jets Drive Supersonic Turbulence in Molecular Clouds?
Cited by in corpus (98)
- Star Formation in the Milky Way and Nearby Galaxies
- The CO-to-H2 Conversion Factor
- Cool Gas in High Redshift Galaxies
- Dusty Star-Forming Galaxies at High Redshift
- Theoretical Challenges in Galaxy Formation
- Molecular Gas and Star Formation in Nearby Disk Galaxies
- Combined CO & Dust Scaling Relations of Depletion Time and Molecular Gas Fractions with Cosmic Time, Specific Star Formation Rate and Stellar Mass
- The CO-to-H2 Conversion Factor and Dust-to-Gas Ratio on Kiloparsec Scales in Nearby Galaxies
- The Evolving Interstellar Medium of Star Forming Galaxies Since z=2 as Probed by Their Infrared Spectral Energy Distributions
- The Evolution of the Star-forming Interstellar Medium across Cosmic Time
- Regularity underlying complexity: a redshift-independent description of the continuous variation of galaxy-scale molecular gas properties in the mass-star formation rate plane
- The Big Problems in Star Formation: the Star Formation Rate, Stellar Clustering, and the Initial Mass Function
- Validation of the equilibrium model for galaxy evolution to z~3 through molecular gas and dust observations of lensed star-forming galaxies
- Low CO Luminosities in Dwarf Galaxies
- The impact of interactions, bars, bulges, and AGN on star formation efficiency in local massive galaxies
- Feedback-regulated star formation in molecular clouds and galactic discs
- Evolution of the atomic and molecular gas content of galaxies
- Cold gas properties of the Herschel Reference Survey. II. Molecular and total gas scaling relations
- A Comparative Study of Giant Molecular Clouds in M51, M33 and the Large Magellanic Cloud
- Implementing Molecular Hydrogen in Hydrodynamic Simulations of Galaxy Formation
- Predictions for the CO emission of galaxies from a coupled simulation of galaxy formation and photon dominated regions
- On the dust temperatures of high redshift galaxies
- The origin of fast molecular outflows in quasars: molecule formation in AGN-driven galactic winds
- Dynamical Equilibrium in the Molecular ISM in 28 Nearby Star-Forming Galaxies
- Star Formation in Atomic Gas
- A Theory for the Excitation of CO in Star Forming Galaxies
- Star formation in metal-poor gas clouds
- The equilibrium view on dust and metals in galaxies: Galactic outflows drive low dust-to-metal ratios in dwarf galaxies
- Atomic and molecular gas in IllustrisTNG galaxies at low redshift
- Molecular Cloud Populations in the Context of Their Host Galaxy Environments: A Multiwavelength Perspective
- The ATLAS3D project - XXII. Low-efficiency star formation in early-type galaxies: hydrodynamic models and observations
- FIREbox: Simulating galaxies at high dynamic range in a cosmological volume
- ALLSMOG: an APEX Low-redshift Legacy Survey for MOlecular Gas. I - molecular gas scaling relations, and the effect of the CO/H2 conversion factor
- Resolved Giant Molecular Clouds in Nearby Spiral Galaxies: Insights from the CANON CO (1-0) Survey
- Molecular gas content in strongly-lensed z~1.5-3 star-forming galaxies with low IR luminosities
- DESPOTIC -- A New Software Library to Derive the Energetics and SPectra of Optically Thick Interstellar Clouds
- Probability Distribution Functions OF 12CO(J = 1-0) Brightness and Integrated Intensity in M51: The PAWS View
- The environmental dependence of the X_CO conversion factor
- Evidence for a non-universal Kennicutt-Schmidt relationship using hierarchical Bayesian linear regression
- Modelling CO emission from hydrodynamic simulations of nearby spirals, starbursting mergers, and high-redshift galaxies
- The CO/CO ratio in turbulent molecular clouds
- Sub-mm Emission Line Deep Fields: CO and [CII] Luminosity Functions out to z = 6
- Molecular gas as the driver of fundamental galactic relations
- Galaxy metallicities depend primarily on stellar mass and molecular gas mass
- Metallicity dependence of the H/H and C/C/CO distributions in a resolved self-regulating interstellar medium
- The Effect of Star Formation on the Redshift Evolution of Interstellar Metals, Atomic and Molecular Gas in Galaxies
- The effects of metallicity, UV radiation and non-equilibrium chemistry in high-resolution simulations of galaxies
- Clumping and the Interpretation of kpc-Scale Maps of the Interstellar Medium: Smooth HI and Clumpy, Variable H2 Surface Density
- Galaxy Gas Fractions at High-Redshift: The Tension between Observations and Cosmological Simulations
- The Molecular Gas Reservoirs of Galaxies: A comparison of CO(1-0) and dust-based molecular gas masses
- The X-factor in Galaxies: II. The molecular hydrogen -- star formation relation
- Low Gas Fractions Connect Compact Star-Forming Galaxies to their z ~ 2 Quiescent Descendants
- Carbon monoxide in an extremely metal-poor galaxy
- Molecular Gas Properties and CO-to-H2 Conversion Factors in the Central Kiloparsec of NGC 3351
- The CO-to-H2 Conversion Factor across the Perseus Molecular Cloud
- Photodissociation Region Diagnostics Across Galactic Environments
- The Physical Drivers and Observational Tracers of CO-to-H2 Conversion Factor Variations in Nearby Barred Galaxy Centers
- The Mass-Size Relation and the Constancy of GMC Surface Densities in the Milky Way
- Does the CO-to-H2 conversion factor depend on the star formation rate?
- Submillimeter flux as a probe of molecular ISM mass in high- galaxies
- The nature of the ISM in galaxies during the star-formation activity peak of the Universe
- Dependence of on metallicity, intensity, and spatial scale in a self-regulated interstellar medium
- The simulation of molecular clouds formation in the Milky Way
- The VIRUS-P Exploration of Nearby Galaxies (VENGA): The Xco Gradient in NGC 628
- Synthetic observations of star formation and the interstellar medium
- The Weak Carbon Monoxide Emission In An Extremely Metal Poor Galaxy, Sextans A
- Scaling relations of the properties for CO resolved structures in nearby spiral galaxies
- The kiloparsec-scale gas kinematics in two star-forming galaxies at seen with ALMA and VLT-SINFONI
- Dwarf Galaxies with Ionizing Radiation Feedback. II: Spatially-resolved Star Formation Relation
- Molecular gas at supernova local environments unveiled by EDGE
- Resolving the Dust-to-Metals Ratio and CO-to-H Conversion Factor in the Nearby Universe
- PDFchem: A new fast method to determine ISM properties and infer environmental parameters using probability distributions
- Populating H and CO in galaxy simulation with dust evolution
- Dark Molecular Gas in Simulations of z~0 Disc Galaxies
- Why is the Milky Way X-factor Constant?
- Chemical evolution of giant molecular clouds in simulations of galaxies
- Reproducing the CO-to-H conversion factor in cosmological simulations of Milky Way-mass galaxies
- The Carbon-to-H, CO-to-H Conversion Factors and Carbon Abundance on Kiloparsec Scales in Nearby Galaxies
- Observations of neutral carbon in 29 high-z lensed dusty star forming galaxies and the comparison of gas mass tracers
- A dynamical transition from atomic to molecular intermediate-velocity clouds
- The Schmidt-Kennicutt Law of Matched-Age Star Forming Regions; Pa-alpha Observations of the Early-Phase Interacting Galaxy Taffy I
- To see or not to see a galaxy, that is the question
- An Unbiased CO Survey Toward the Northern Region of the Small Magellanic Cloud with the Atacama Compact Array. II. CO Cloud Catalog
- The interstellar medium of high-redshift galaxies: Gathering clues from C III] and [C II] lines
- Relation between parameters of dust and parameters of molecular and atomic gas in extragalactic star-forming regions
- Census of High- and Medium-mass Protostars V. CO Abundance and the Galactic Factor
- Gas, dust, and the CO-to-molecular gas conversion factor in low-metallicity starbursts
- The Opacity of Spiral Galaxy Disks IX; Dust and Gas Surface Densities
- The relation between mid-plane pressure and molecular hydrogen in galaxies: Environmental dependence
- Effects of dust grain size distribution on the abundances of CO and H in galaxy evolution
- Surface density: a new parameter in the fundamental metallicity relation of star-forming galaxies
- The relationship between cluster environment and molecular gas content of star-forming galaxies in the EAGLE simulation
- The Hierarchical Dynamical State of Molecular Gas from 3 to 300 pc in NGC 253
- CO-to-H conversion factor and grain size distribution through the analysis of - relation
- The Mitchell Spectrograph: Studying Nearby Galaxies with the VIRUS Prototype
- Tight correlation of star formation with [Ci] and CO lines across cosmic time
- Direct detection of cool molecular gas in a star-forming galaxy at
- The CHIMERA Survey: The first CO detection in Leo T, the lowest mass known galaxy still hosting cold molecular gas