The Smooth MgII gas distribution through the interstellar/extra-planar/halo interface
arXiv:1310.1918 · doi:10.1088/2041-8205/777/1/L11
Abstract
We report the first measurements of MgII absorption systems associated with spectroscopically confirmed z~0.1 star-forming galaxies at projected distances of D<6kpc. We demonstrate the data are consistent with the well known anti-correlation between rest-frame MgII equivalent width, Wr(2796), and impact parameter, D, represented by a single log-linear relation derived by Nielsen et al. (MAGIICAT) that converges to ~2A at D=0kpc. Incorporating MAGIICAT, we find that the halo gas covering fraction is unity below D~25kpc. We also report that our D<6kpc absorbers are consistent with the Wr(2796) distributions of the Milky Way interstellar medium (ISM) and ISM+halo. In addition, quasar sight-lines of intermediate redshift galaxies with 6<D<25kpc have an equivalent width distribution similar to that of the Milky Way halo, implying that beyond ~6kpc, quasar sight-lines are likely probing halo gas and not the ISM. As inferred by the Milky Way and our new data, the gas profiles of galaxies can be fit by a single log-linear Wr(2796)-D relation out to large scales across a variety of gas-phase conditions and is maintained through the halo/extra-planar/ISM interfaces, which is remarkable considering their kinematic complexity. These low redshift, small impact parameter absorption systems are the first steps to bridge the gap between quasar absorption-line studies and HI observations of the CGM.
6 pages, 3 figures, accepted 26/09/2013 for publication in ApJL
References in corpus (6)
- Cold gas accretion in galaxies
- The Discovery of 1000 km/s Outflows in Massive Post-starburst Galaxies at z=0.6
- Halo Gas Cross Sections And Covering Fractions of MgII Absorption Selected Galaxies
- New perspectives on strong z=0.5 MgII absorbers: are halo-mass and equivalent width anti-correlated?
- On the HI content, dust-to-gas ratio and nature of MgII absorbers
- MAGIICAT III. Interpreting Self-Similarity of the Circumgalactic Medium with Virial Mass using MgII Absorption
Cited by in corpus (23)
- MAGIICAT V. Orientation of Outflows and Accretion Determine the Kinematics and Column Densities of the Circumgalactic Medium
- MAGIICAT III. Interpreting Self-Similarity of the Circumgalactic Medium with Virial Mass using MgII Absorption
- Relationship between the Metallicity of the Circumgalactic Medium and Galaxy Orientation
- Galaxies Probing Galaxies at High Resolution: Co-Rotating Gas Associated with a Milky Way Analog at z=0.4
- Bipolar Outflows out to 10~kpc for Massive Galaxies at Redshift
- The CGM and IGM at z5: metal budget and physical connection
- The Impact of the Group Environment on the OVI Circumgalactic Medium
- The Relation Between Galaxy ISM and Circumgalactic OVI Gas Kinematics Derived from Observations and CDM Simulations
- Lyman Alpha and MgII as Probes of Galaxies and their Environments
- Project AMIGA: A Minimal Covering Factor for Optically Thick Circumgalactic Gas Around the Andromeda Galaxy
- A Complex Multiphase DLA Associated with a Compact Group at z=2.431 Traces Accretion, Outflows, and Tidal Streams
- On the Kinematics of Cold, Metal-enriched Galactic Fountain Flows in Nearby Star-forming Galaxies
- [O II] nebular emission from Mg II absorbers: Star formation associated with the absorbing gas
- An emission map of the disk-circumgalactic medium transition in starburst IRAS 08339+6517
- Catalog of narrow C IV absorption lines in BOSS (II): for quasars with zem > 2.4
- Catalog of narrow absorption lines in BOSS (I): for quasars with
- Nature of the Galaxies On Top Of Quasars producing MgII absorption
- Revealing the host galaxy of a quasar 2175 Å dust absorber at z = 2.12
- MusE GAs FLOw and Wind (MEGAFLOW) XIII. Cool gas traced by MgII around isolated galaxies
- Spatially Resolved Circumgalactic Medium around a Star-Forming Galaxy Driving a Galactic Outflow at
- Neutral Gas Accretion onto Nearby Galaxies
- Ultra-strong MgII absorbers trace both inflowing and outflowing gas: insights from dual down-the-barrel and quasar sightlines
- Intergalactic Medium Tomography with the Sunburst Arc