Probing the intra-group medium of a z = 0.28 galaxy group
arXiv:1607.03386 · doi:10.1093/mnras/stx528
Abstract
We present new MUSE observations of a galaxy group probed by a background quasar. The quasar sightline passes between multiple galaxies, whilst showing at the same redshift low ionised metal line species, including Ca II, Mg I, Mg II and Fe II. Based on the galaxy redshifts measured from the MUSE data, we estimate the galaxies to be part of a small galaxy group with a halo mass of M. We use the MUSE data to reveal the two dimensional dynamical properties of the gas and stars in the group galaxies, and relate these to the absorber kinematics. With these data we consider a number of scenarios for the nature of the gas probed by the sightline absorbers: a co-rotating gas halo associated with a single galaxy within the group; outflowing material from a single group member powered by recent star-formation; and cool dense gas associated with an intra-group medium. We find that the dynamics, galaxy impact parameters, star-formation rates, and the absorber strength suggest the cool gas can not be clearly associated with any single galaxy within the group. Instead we find that the observations are consistent with a superposition of cool gas clouds originating with the observed galaxies as they fall into the group potential, and are now likely in the process of forming the intra-group medium.
14 pages, 9 figures, published in MNRAS
References in corpus (25)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- Ubiquitous giant Ly nebulae around the brightest quasars at revealed with MUSE
- Characterizing the Circumgalactic Medium of Nearby Galaxies with HST/COS and HST/STIS Absorption-Line Spectroscopy
- Metal-line absorption around 2.4 star-forming galaxies in the Keck Baryonic Structure Survey
- On the possible environmental effect in distributing heavy elements beyond individual gaseous halos
- A Universal Density Structure for Circum-Galactic Gas
- MusE GAs FLOw and Wind (MEGAFLOW) I: First MUSE results on background quasars
- MUSE searches for galaxies near very metal-poor gas clouds at z~3: new constraints for cold accretion models
- New Perspective on Galaxy Outflows From the First Detection of Both Intrinsic and Traverse Metal-Line Absorption
- High-precision limit on variation in the fine-structure constant from a single quasar absorption system
- Directly imaging damped Ly-alpha galaxies at z>2. III: The star formation rates of neutral gas reservoirs at z~2.7
- Nature of the Absorbing Gas associated with a Galaxy Group at z~0.4
- The Evolution of Lyman alpha Absorbers in the Redshift Range 0.5<z<1.9
- Probing the IGM/Galaxy Connection Toward PKS0405-123 III: The Galaxy Survey and Correlations with OVI Absorbers
- The WIRCAM Deep Infrared Cluster Survey I: Groups and Clusters at z > 1.1
- Detection of hot, metal-enriched outflowing gas around 2.3 star-forming galaxies in the Keck Baryonic Structure Survey
- Cross correlation of Lyman-alpha absorbers with gas-rich galaxies
- The MUSE Data Reduction Pipeline: Status after Preliminary Acceptance Europe
- Lyman Alpha and MgII as Probes of Galaxies and their Environments
- Multi-object spectroscopy of the field surrounding PKS 2126-158: Discovery of a z=0.66 galaxy group
- The VLT LBG Redshift Survey - VI. Mapping HI in the proximity of LBGs with X-Shooter
- On the connection between the metal-enriched intergalactic medium and galaxies: an OVI-galaxy cross-correlation study at
- The dynamics of Andromeda's dwarf galaxies and stellar streams
Cited by in corpus (44)
- Resolving small-scale cold circumgalactic gas in TNG50
- MUSE Analysis of Gas around Galaxies (MAGG) -- II: Metal-enriched halo gas around z~1 galaxies
- Multi-phase Circum-Galactic Medium probed with MUSE and ALMA
- The Cosmic Ultraviolet Baryon Survey (CUBS) I. Overview and the diverse environments of Lyman limit systems at z<1
- Gas infall and radial transport in cosmological simulations of Milky Way-mass disks
- Nature of the Absorbing Gas associated with a Galaxy Group at z~0.4
- MUSE Analysis of Gas around Galaxies (MAGG) -- I: Survey design and the environment of a near pristine gas cloud at z~3.5
- The MUSE Ultra Deep Field (MUDF). II. Survey design and the gaseous properties of galaxy groups at 0.5 < z < 1.5
- MAGIICAT VI. The MgII Intragroup Medium is Kinematically Complex
- Witnessing galaxy assembly in an extended z~3 structure
- Observational signatures of a warped disk associated with cold-flow accretion
- Metal-enriched halo gas across galaxy overdensities over the last 10 billion years
- MUSE Analysis of Gas around Galaxies (MAGG) -- IV: The gaseous environment of 3-4 Lyman-alpha emitting galaxies
- MUSE-ALMA Halos V: Physical properties and environment of z < 1.4 HI quasar absorbers
- The COS CGM Compendium (CCC). I: Survey Design and Initial Results
- A new era of fine structure constant measurements at high redshift
- ALMACAL III: A combined ALMA and MUSE Survey for Neutral, Molecular, and Ionised Gas in an HI-Absorption-Selected System
- The Geometry of Cold, Metal-Enriched Gas Around Galaxies at
- Quasar Sightline and Galaxy Evolution (QSAGE) Survey - I. The Galaxy Environment of OVI Absorbers up to z=1.4 around PKS 0232-04
- Characterising the Circum-Galactic Medium of Damped Lyman- Absorbing Galaxies
- The MUSE Extremely Deep Field: a first panoramic view of an Mg II emitting intragroup medium
- The Gas-phase Metallicity Profiles of Star-forming Galaxies in the Modified Accretion Disk Framework
- Direct Detection of Quasar Feedback Via the Sunyaev-Zeldovich Effect
- MUSE Analysis of Gas around Galaxies (MAGG) -- V: Linking ionized gas traced by CIV and SiIV absorbers to Ly emitting galaxies at
- The CGM at Cosmic Noon with KCWI: Outflows from a Star-forming Galaxy at z=2.071
- The VLT LBG Redshift Survey - VI. Mapping HI in the proximity of LBGs with X-Shooter
- Characterizing circumgalactic gas around massive ellipticals at z~0.4 III. The galactic environment of a chemically-pristine Lyman limit absorber
- Into the Lyα jungle: exploring the circumgalactic medium of galaxies at z ~ 4-5 with MUSE
- C IV absorbers tracing cool gas in dense galaxy group/cluster environments
- Disentangling the multi-phase circumgalactic medium shared between a dwarf and a massive star-forming galaxy at z~0.4
- Quasar Sightline and Galaxy Evolution (QSAGE) survey -- II. Galaxy overdensities around UV luminous quasars at z=1-2
- The relationship between gas and galaxies at z<1 using the Q0107 quasar triplet
- The Similar Signatures of Coplanar Gas Inflow and Disk Warps in Galactic Gas Kinematic Maps
- Detection of a Multiphase Intragroup Medium: Results from the COS-IGrM Survey
- MusE GAs FLOw and Wind (MEGAFLOW) XII. Rationale and design of a MgII survey of the cool circum-galactic medium with MUSE and UVES: The MEGAFLOW Survey
- Detection of Low Metallicity Warm Plasma in a Galaxy Overdensity Environment at z ~ 0.2
- Discovery of extremely low-metallicity circumgalactic gas at toward Q0454-220
- H_2 molecular gas absorption-selected systems trace CO molecular gas-rich galaxy overdensities
- A Sub-Damped Ly Absorber with Unusual Abundances: Evidence of Gas Recycling in a Low-Redshift Galaxy Group
- Low Mass Group Environments have no Substantial Impact on the Circumgalactic Medium Metallicity
- Baryonic Ecosystem in Galaxies (BEINGMgII) -- II. Unveiling the Nature of Galaxies Harboring Cool Gas Reservoirs
- Considering light-matter interactions in the Friedmann equations
- Baryonic Ecosystem IN Galaxies (BEINGMgII) -- III. Cool gas reservoirs at in the Dark Energy Survey
- Studying the gaseous outskirts of galaxy groups with coherent Ly alpha absorption patterns