Slicing the cool circumgalactic medium along the major-axis of a star-forming galaxy at
arXiv:1911.04809 · doi:10.1093/mnras/stz3183
Abstract
We present spatially-resolved echelle spectroscopy of an intervening MgII-FeII-MgI absorption-line system detected at toward the giant gravitational arc PSZ1 G311.65-18.48. The absorbing gas is associated to an inclined disk-like star-forming galaxy, whose major axis is aligned with the two arc-segments reported here. We probe in absorption the galaxy's extended disk continuously, at kpc sampling, from its inner region out to the optical radius. We detect strong ( Ã ) coherent absorption along independent positions at impact parameters -- kpc on one side of the galaxy, and no absorption at -- kpc on the opposite side (all de-lensed distances at ). We show that: (1) the gas distribution is anisotropic; (2) , , , and the ratio , all anti-correlate with ; (3) the - relation is not cuspy and exhibits significantly less scatter than the quasar-absorber statistics; (4) the absorbing gas is co-rotating with the galaxy out to kpc, resembling a `flat' rotation curve, but at kpc velocities decline below the expectations from a 3D disk-model extrapolated from the nebular [OII] emission. These signatures constitute unambiguous evidence for rotating extra-planar diffuse gas, possibly also undergoing enriched accretion at its edge. Arguably, we are witnessing some of the long-sought processes of the baryon cycle in a single distant galaxy expected to be representative of such phenomena.
Accepted for publication in MNRAS