Lopsidedness in WHISP galaxies: I. Rotation curves and kinematic lopsidedness
J. van Eymeren, E. Juette, C.J. Jog, Y. Stein, R.-J. Dettmar

TL;DR
This study analyzes the rotation curves and kinematic asymmetries of 70 galaxies from the WHISP survey, classifying their velocity fields and quantifying the prevalence of lopsidedness, which relates to galaxy formation and halo interactions.
Contribution
It introduces a detailed classification of galaxy kinematic asymmetries and quantifies the global lopsidedness in a large galaxy sample using HI data.
Findings
36% of galaxies are globally lopsided.
The mean lopsided perturbation parameter is 0.056.
Five types of kinematic behavior are identified.
Abstract
The frequently observed lopsidedness of the distribution of stars and gas in disc galaxies is still considered as a major problem in galaxy dynamics. It is even discussed as an imprint of the formation history of discs and the evolution of baryons in dark matter haloes. Here, we analyse a selected sample of 70 galaxies from the Westerbork HI Survey of Spiral and Irregular Galaxies. The HI data allow us to follow the morphology and the kinematics out to very large radii. In the present paper, we present the rotation curves and study the kinematic asymmetry. We extract the rotation curves of receding and approaching sides separately and show that the kinematic behaviour of disc galaxies can be classified by five different types: symmetric velocity fields where the rotation curves of receding and approaching sides are almost identical; global distortions where the rotation velocities of…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astrophysics and Star Formation Studies · Stellar, planetary, and galactic studies
