Deep Ultraviolet, Emission-Line Imaging of the Makani Galactic Wind
Abstract
The OVI 1032, 1038 A line is a key probe of cooling gas in the circumgalactic medium (CGM) of galaxies, but has been observed to date primarily in absorption along single sightlines. We present deep HST ACS-SBC observations of the compact, massive starburst Makani. Makani hosts a 100 kpc, [OII]-emitting galactic wind driven by two episodes of star formation over 400 Myr. We detect OVI and Ly emission across the [OII] nebula with similar morphology and extent, out to r ~ 50 kpc. Using differential narrow-band imaging, we separate Ly and OVI and show that the OVI emission is comparable in brightness to [OII], with erg/s. The similar hourglass morphology and size of [OII] and OVI implicate radiative cooling at K in a hot-cold interface. This may occur as the K CGM -- or the hot fluid driving the wind -- exchanges mass with the K clouds entrained in (or formed by) the wind. The optical/UV line ratios may be consistent with shock ionization, though uncertain attenuation and Ly radiative transfer complicate the interpretation. The detection of OVI in Makani lies at the bleeding edge of the UV imaging capabilities of HST, and provides a benchmark for future emission-line imaging of the CGM with a wide-area UV telescope.
Cite
@article{arxiv.2503.20042,
title = {Deep Ultraviolet, Emission-Line Imaging of the Makani Galactic Wind},
author = {Triet Ha and David Rupke and Shane Caraker and Jack Harper and Alison Coil and Miao Li and Christy Tremonti and Aleksandar Diamond-Stanic and James Geach and Ryan Hickox and Sean Johnson and Gene Leung and John Moustakas and Serena Perrotta and Gregory Rudnick and Paul Sell and Kelly Whalen},
journal= {arXiv preprint arXiv:2503.20042},
year = {2025}
}
Comments
resubmitted to the AAS Journals