Recovering the Physical Properties of Molecular Gas in Galaxies from CO SLED Modeling
arXiv:1803.07084 · doi:10.3847/1538-4357/aab3e2
Abstract
Modeling of the spectral line energy distribution (SLED) of the CO molecule can reveal the physical conditions (temperature, density) of molecular gas in Galactic clouds and other galaxies. Recently, the Herschel Space Observatory and ALMA have offered, for the first time, a comprehensive view of the rotational J = 4-3 through J = 13-12 lines, which arise from a complex, diverse range of physical conditions that must be simplified to one, two, or three components when modeled. Here we investigate the recoverability of physical conditions from SLEDs produced by galaxy evolution simulations containing a large dynamical range in physical properties. These simulated SLEDs were generally fit well by one component of gas whose properties largely resemble or slightly underestimate the luminosity-weighted properties of the simulations when clumping due to non-thermal velocity dispersion is taken into account. If only modeling the first three rotational lines, the median values of the marginalized parameter distributions better represent the luminosity-weighted properties of the simulations, but the uncertainties in the fitted parameters are nearly an order of magnitude, compared to approximately 0.2 dex in the "best-case" scenario of a fully sampled SLED through J = 10-9. This study demonstrates that while common CO SLED modeling techniques cannot reveal the underlying complexities of the molecular gas, they can distinguish bulk luminosity-weighted properties that vary with star formation surface densities and galaxy evolution, if a sufficient number of lines are detected and modeled.
13 pages, accepted by The Astrophysical Journal
References in corpus (17)
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- CO excitation of normal star forming galaxies out to z=1.5 as regulated by the properties of their interstellar medium
- Highly-excited CO emission in APM08279+5255 at z=3.9
- The Atomic to Molecular Transition in Galaxies. I: An Analytic Approximation for Photodissociation Fronts in Finite Clouds
- The Herschel Comprehensive (U)LIRG Emission Survey (HerCULES): CO Ladders, fine structure lines, and neutral gas cooling
- Star formation relations and CO SLEDs across the J-ladder and redshift
- ISM properties of a Massive Dusty Star-Forming Galaxy discovered at z ~ 7
- The Rest-Frame Submillimeter Spectrum of High-Redshift, Dusty, Star-Forming Galaxies
- A Herschel Space Observatory Spectral Line Survey of Local Luminous Infrared Galaxies from 194 to 671 Microns
- Density Probability Distribution Functions in Supersonic Hydrodynamic and MHD Turbulence
- Millimeter-Wave Line Ratios and Sub-beam Volume Density Distributions
- Molecular gas heating mechanisms, and star formation feedback in merger/s tarbursts: NGC 6240 and Arp 193 as case studies
- A Survey of the Molecular ISM Properties of Nearby Galaxies using the Herschel FTS
- A physical model for the [CII]-FIR deficit in luminous galaxies
- Warm and Cold Molecular Gas Conditions Modeled in 87 Galaxies Observed by the Herschel SPIRE Fourier Transform Spectrometer
- How Dense is Your Gas? On the recoverability of LVG model parameters
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- Tracing the total molecular gas in galaxies: [CII] and the CO-dark gas
- The ALMA Spectroscopic Survey in the HUDF: Multi-band constraints on line luminosity functions and the cosmic density of molecular gas
- CCAT-prime Collaboration: Science Goals and Forecasts with Prime-Cam on the Fred Young Submillimeter Telescope
- Planck's dusty GEMS. VI. Multi-J CO excitation and interstellar medium conditions in dusty starburst galaxies at z=2-4
- CO excitation, molecular gas density and interstellar radiation field in local and high-redshift galaxies
- Molecular Line Observations in Two Dusty Star-Forming Galaxies at z = 6.9
- Incorporating Astrochemistry into Molecular Line Modelling via Emulation
- Three regimes of CO emission in galaxy mergers
- The State of the Molecular Gas in Post-Starburst Galaxies
- AGN feeding along a one-armed spiral in NGC 4593: A study using ALMA CO(2-1) observations
- Infrared view of the multiphase ISM in NGC 253 II. Modelling the ionised and neutral atomic gas
- The AGN fuelling/feedback cycle in nearby radio galaxies -- IV. Molecular gas conditions and jet-ISM interaction in NGC3100