The atomic gas of star-forming galaxies at z$\sim$0.05 as revealed by the Five-hundred-meter Aperture Spherical Radio Telescope
Cheng Cheng, Edo Ibar, Wei Du, Juan Molina, Gustavo, Orellana-Gonz\'ales, Bo Zhang, Ming Zhu, Cong Kevin Xu, Shumei Wu, Tianwen, Cao, Jia-Sheng Huang, Roger Leiton, Thomas M. Hughes, Chuan He, Zijian Li,, Hai Xu, Y. Sophia Dai, Xu Shao, Marat Musin

TL;DR
This study demonstrates the capabilities of FAST in detecting HI emission in low-redshift star-forming galaxies, providing insights into their gas content and dynamics, and comparing results with previous surveys like ALFALFA.
Contribution
First application of FAST for HI observations of low-z galaxies, showcasing its sensitivity and ability to complement existing data for galaxy gas studies.
Findings
FAST successfully detects HI emission consistent with ALFALFA results.
HI-derived dynamical mass exceeds baryonic mass, indicating dark matter dominance.
Evidence of nuclear starburst activity affecting CO emission profiles.
Abstract
We report new HI observations of four z0.05 star-forming galaxies undertaken during the commissioning phase of the Five-hundred-meter Aperture Spherical Radio Telescope (FAST). FAST is the largest single-dish telescope with a 500 meter aperture and a 19-Beam receiver. Exploiting the unprecedented sensitivity provided by FAST, we aim to study the atomic gas, via the HI 21cm emission line, in low- star-forming galaxies taken from the Valpara\'iso ALMA/APEX Line Emission Survey (VALES) project. Together with previous ALMA CO() observations, the HI data provides crucial information to measure the gas mass and dynamics. As a pilot HI survey, we targeted four local star-forming galaxies at . In particular, one of them has already been detected in HI by the Arecibo Legacy Fast ALFA survey (ALFALFA), allowing a careful comparison. We use an ON-OFF observing approach…
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