MIGHTEE-HI: The direct detection of neutral hydrogen in galaxies at $z>0.25$
Matt J. Jarvis, Madalina N. Tudorache, I. Heywood, Anastasia A. Ponomareva, M. Baes, Natasha Maddox, Kristine Spekkens, Andreea Varasteanu, C. L. Hale, Mario G. Santos, R. G. Varadaraj, Elizabeth A. K. Adams, Alessandro Bianchetti, Barbara Catinella, Jacinta Delhaize

TL;DR
This paper reports the first detection of neutral hydrogen in galaxies at redshifts greater than 0.25 using MeerKAT, revealing larger H I masses and providing new insights into galaxy evolution.
Contribution
It presents the first sample of high-redshift H I detections with an interferometer and measures the baryonic Tully-Fisher relation at z>0.25.
Findings
Detected 11 galaxies at z>0.25 with H I emission.
Found larger H I masses compared to low-redshift counterparts.
Measured the baryonic Tully-Fisher relation at high redshift, consistent with local relations.
Abstract
Atomic hydrogen constitutes the gas reservoir from which molecular gas and star formation in galaxies emerges. However, the weakness of the line means it has been difficult to directly detect in all but the very local Universe. Here we present results from the first search using the MeerKAT International Tiered Extragalactic Exploration (MIGHTEE) Survey for high-redshift () H{\sc i} emission from individual galaxies. By searching for 21-cm emission centered on the position and redshift of optically-selected emission-line galaxies we overcome difficulties that hinder untargeted searches. We detect 11 galaxies at , forming the first sample of detections with an interferometer, with the highest redshift detection at . We find they have much larger H{\sc i} masses than their low-redshift H{\sc i}-selected counterparts for a given stellar mass. This can…
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