Quantified HI Morphology II : Lopsidedness and Interaction in WHISP Column Density Maps
B. W. Holwerda (1,2), N. Pirzkal (3), W.J.G. de Blok (2), A. Bouchard, (4), S-L. Blyth (2), K. J. van der Heyden (2), E. C. Elson (2) ((1), European Space Agency, ESTEC, (2) Astrophysics, Cosmology, Gravity Centre, (ACGC), Astronomy Department, University of Cape Town

TL;DR
This study evaluates the effectiveness of various quantitative morphology parameters in identifying lopsidedness and interactions in HI column density maps of galaxies, aiming to improve merger rate estimations.
Contribution
It introduces the use of the Gini parameter of the second order moment (GM) and assesses their correlation with galaxy lopsidedness and interactions in HI maps.
Findings
Asymmetry, M20, and GM weakly correlate with lopsidedness.
Morphological parameters effectively identify interacting disks.
New parameter combinations improve merger detection accuracy.
Abstract
Lopsidedness of the gaseous disk of spiral galaxies is a common phenomenon in disk morphology, profile and kinematics. Simultaneously, the asymmetry of a galaxy's stellar disk, in combination with other morphological parameters, has seen extensive use as an indication of recent merger or interaction in galaxy samples. Quantified morphology of stellar spiral disks is one avenue to determine the merger rate over much of the age of the Universe. In this paper, we measure the quantitative morphology parameters for the HI column density maps from the Westerbork observations of neutral Hydrogen in Irregular and SPiral galaxies (WHISP). These are Concentration, Asymmetry, Smoothness, Gini, M20, and one addition of our own, the Gini parameter of the second order moment (GM). Our aim is to determine if lopsided or interacting disks can be identified with these parameters. Our sample of 141 HI…
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