Blind HI and OH absorption line search: first results with MALS and uGMRT processed using ARTIP
N. Gupta, P. Jagannathan, R. Srianand, S. Bhatnagar, P. Noterdaeme, F., Combes, P. Petitjean, J. Jose, S. Pandey, C. Kaski, A. J. Baker, S. A., Balashev, E. Boettcher, H.-W. Chen, C. Cress, R. Dutta, S. Goedhart, G., Heald, G. I. G. J\'ozsa, E. Kamau, P. Kamphuis, J. Kerp

TL;DR
This paper introduces the ARTIP pipeline for processing radio interferometric data and presents initial results from the MALS and uGMRT surveys, detecting and characterizing HI and OH absorbers at low redshifts.
Contribution
The paper details the development of the ARTIP pipeline and demonstrates its effectiveness through initial blind searches for HI and OH absorbers using MeerKAT and uGMRT data.
Findings
Most sensitive spectrum of PKS1830-211 obtained
Estimated absorber densities at specific redshifts
Constraints on cold gas covering factor in galaxy outskirts
Abstract
We present details of the Automated Radio Telescope Imaging Pipeline (ARTIP) and results of a sensitive blind search for HI and OH absorbers at and , respectively. ARTIP is written in Python 3.6, extensively uses the Common Astronomy Software Application (CASA) tools and tasks, and is designed to enable the geographically-distributed MeerKAT Absorption Line Survey (MALS) team to collaboratively process large volumes of radio interferometric data. We apply it to the first MALS dataset obtained using the 64-dish MeerKAT radio telescope and 32K channel mode of the correlator. With merely 40 minutes on target, we present the most sensitive spectrum of PKS1830-211 ever obtained and characterize the known HI () and OH () absorbers. We further demonstrate ARTIP's capabilities to handle realistic observing scenarios by applying it to a sample of 72 bright radio…
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