The Cosmic Ultraviolet Baryon Survey (CUBS) V: On the Thermodynamic Properties of the Cool Circumgalactic Medium at
arXiv:2209.01228 · doi:10.1093/mnras/stac2528
Abstract
This paper presents a systematic study of the photoionization and thermodynamic properties of the cool circumgalactic medium (CGM) as traced by rest-frame ultraviolet absorption lines around 26 galaxies at redshift . The study utilizes both high-quality far-ultraviolet and optical spectra of background QSOs and deep galaxy redshift surveys to characterize the gas density, temperature, and pressure of individual absorbing components and to resolve their internal non-thermal motions. The derived gas density spans more than three decades, from to , while the temperature of the gas is confined in a narrow range of . In addition, a weak anti-correlation between gas density and temperature is observed, consistent with the expectation of the gas being in photoionization equilibrium. Furthermore, decomposing the observed line widths into thermal and non-thermal contributions reveals that more than 30% of the components at exhibit line widths driven by non-thermal motions, in comparison to % found at -3. Attributing the observed non-thermal line widths to intra-clump turbulence, we find that massive quenched galaxies on average exhibit higher non-thermal broadening/turbulent energy in their CGM compared to star-forming galaxies at . Finally, strong absorption features from multiple ions covering a wide range of ionization energy (e.g., from Mg II to O IV) can be present simultaneously in a single absorption system with kinematically aligned component structure, but the inferred pressure in different phases may differ by a factor of .
16 pages, 4 figures, 1 table, accepted for publication in MNRAS
References in corpus (25)
- Cosmic Star Formation History
- The Circumgalactic Medium
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- Moving mesh cosmology: tracing cosmological gas accretion
- The Search for the Missing Baryons at Low Redshift
- The COS-Halos Survey: Metallicities in the Low-Redshift Circumgalactic Medium
- Characterizing the Circumgalactic Medium of Nearby Galaxies with HST/COS and HST/STIS Absorption-Line Spectroscopy
- The COS-Halos Survey: Origins of the Highly Ionized Circumgalactic Medium of Star-Forming Galaxies
- Resolving small-scale cold circumgalactic gas in TNG50
- On the possible environmental effect in distributing heavy elements beyond individual gaseous halos
- The Properties of Low Redshift Intergalactic O VI Absorbers Determined from High S/N Observations of 14 QSOs with the Cosmic Origins Spectrograph
- Hot Atmospheres, Cold Gas, AGN Feedback and the Evolution of Early Type Galaxies: a Topical Perspective
- The extent of chemically enriched gas around star-forming dwarf galaxies
- The Clustering of MgII Absorption Systems at z=0.5 and Detection of Cold Gas in Massive Halos
- Tracing the Cosmic Metal Evolution in the Low-Redshift Intergalactic Medium
- Preventing Star Formation in Early-Type Galaxies with Late-Time Stellar Heating
- The formation of hot gaseous haloes around galaxies
- Probing the Hot X-ray Corona around the Massive Spiral Galaxy, NGC 6753, Using Deep XMM-Newton observations
- The Cosmic Ultraviolet Baryon Survey (CUBS) -- III. Physical properties and elemental abundances of Lyman limit systems at
- The COS Absorption Survey of Baryon Harbors: Unveiling the Physical Conditions of Circumgalactic Gas through Multiphase Bayesian Ionization Modeling
- Circumgalactic Pressure Profiles Indicate Precipitation-Limited Atmospheres for
- Cloud-by-cloud, multiphase, Bayesian modeling: Application to four weak, low ionization absorbers
- Cool circumgalactic gas of passive galaxies from cosmological inflow
- The Cosmic Ultraviolet Baryon Survey (CUBS) IV: The Complex Multiphase Circumgalactic Medium as Revealed by Partial Lyman Limit Systems
- Evidence for Late-Time Feedback from the Discovery of Multiphase Gas in a Massive Elliptical at