MIGHTEE-HI: HI galaxy properties in the large scale structure environment at z~0.37 from a stacking experiment
Abstract
We present the first measurement of HI mass of star-forming galaxies in different large scale structure environments from a blind survey at . In particular, we carry out a spectral line stacking analysis considering spectra of colour-selected star-forming galaxies undetected in HI at in the COSMOS field, extracted from the MIGHTEE-HI Early Science datacubes, acquired with the MeerKAT radio telescope. We stack galaxies belonging to different subsamples depending on three different definitions of large scale structure environment: local galaxy overdensity, position inside the host dark matter halo (central, satellite, or isolated), and cosmic web type (field, filament, or knot). We first stack the full star-forming galaxy sample and find a robust HI detection yielding an average galaxy HI mass of at . Next, we investigate the different subsamples finding a negligible difference in as a function of the galaxy overdensity. We report an HI excess compared to the full sample in satellite galaxies (, at ) and in filaments (. Conversely, we report non-detections for the central and knot galaxies subsamples, which appear to be HI-deficient. We find the same qualitative results also when stacking in units of HI fraction (). We conclude that the HI amount in star-forming galaxies at the studied redshifts correlates with the large scale structure environment.
Keywords
Cite
@article{arxiv.2403.00734,
title = {MIGHTEE-HI: HI galaxy properties in the large scale structure environment at z~0.37 from a stacking experiment},
author = {Francesco Sinigaglia and Giulia Rodighiero and Ed Elson and Alessandro Bianchetti and Mattia Vaccari and Natasha Maddox and Anastasia A. Ponomareva and Bradley S. Frank and Matt J. Jarvis and Barbara Catinella and Luca Cortese and Sambit Roychowdhury and Maarten Baes and Jordan D. Collier and Olivier Ilbert and Ali A. Khostovan and Sushma Kurapati and Hengxing Pan and Isabella Prandoni and Sambatriniaina H. A. Rajohnson and Mara Salvato and Srikrishna Sekhar and Gauri Sharma},
journal= {arXiv preprint arXiv:2403.00734},
year = {2024}
}
Comments
Accepted for publication in MNRAS. 15 figures, 3 tables