Unravelling the Post-Collision Properties of the Cartwheel Galaxy: A MUSE Exploration of its Bar and Inner Region

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Hauptverfasser: Mondal, Chayan, Barway, Sudhanshu
Format: Preprint
Veröffentlicht: 2023
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author Mondal, Chayan
Barway, Sudhanshu
author_facet Mondal, Chayan
Barway, Sudhanshu
contents Aims: To investigate the characteristics of the bar and inner disk in the collisional ring galaxy Cartwheel. Methods: We used the Integral Field Unit (IFU) observations with Multi-Unit Spectroscopic Explorer (MUSE) of the Very Large Telescope (VLT) to investigate the stellar kinematics, age, and nature of ionised gas in the inner region of the Cartwheel. We produced the stellar line of sight (LOS) velocity (V), velocity dispersion ($σ$), h$_3$ velocity moment, stellar population age, and emission-line maps of the galaxy using the Galaxy IFU Spectroscopy Tool (GIST) pipeline. Results: The observed nature of intensity, V, and $σ$ profiles altogether support the existence of a stellar bar as earlier revealed from near-infrared (NIR) $K_s$ band imaging. A weak correlation between V/$σ$ and h$_3$ is found within the bar radius, providing more kinematic evidence for a stellar bar which survived the drop-through collision. The overall weak anti-correlation between V/$σ$ and h$_3$ in the disk implies that the stellar orbits in the disk are less stable, which might be due to the impact of the collision. The mass-weighted age map of the galaxy shows that the stellar populations in the bar region are relatively older, with an increasing gradient from the bar edge to the centre, another evidence to signify that the bar was present before the galaxy underwent collision. We do not find an active galactic nuclei (AGN) from the BPT analysis of a central unresolved source reported earlier using NIR imaging. Our findings provide the preservation of the pre-collisional structures in the inner region of the Cartwheel, an important input to understanding the evolution of collisional galaxy systems, particularly investigating the pre-collisional central region for theoretical studies.
format Preprint
id arxiv_https___arxiv_org_abs_2310_00584
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Unravelling the Post-Collision Properties of the Cartwheel Galaxy: A MUSE Exploration of its Bar and Inner Region
Mondal, Chayan
Barway, Sudhanshu
Astrophysics of Galaxies
Aims: To investigate the characteristics of the bar and inner disk in the collisional ring galaxy Cartwheel. Methods: We used the Integral Field Unit (IFU) observations with Multi-Unit Spectroscopic Explorer (MUSE) of the Very Large Telescope (VLT) to investigate the stellar kinematics, age, and nature of ionised gas in the inner region of the Cartwheel. We produced the stellar line of sight (LOS) velocity (V), velocity dispersion ($σ$), h$_3$ velocity moment, stellar population age, and emission-line maps of the galaxy using the Galaxy IFU Spectroscopy Tool (GIST) pipeline. Results: The observed nature of intensity, V, and $σ$ profiles altogether support the existence of a stellar bar as earlier revealed from near-infrared (NIR) $K_s$ band imaging. A weak correlation between V/$σ$ and h$_3$ is found within the bar radius, providing more kinematic evidence for a stellar bar which survived the drop-through collision. The overall weak anti-correlation between V/$σ$ and h$_3$ in the disk implies that the stellar orbits in the disk are less stable, which might be due to the impact of the collision. The mass-weighted age map of the galaxy shows that the stellar populations in the bar region are relatively older, with an increasing gradient from the bar edge to the centre, another evidence to signify that the bar was present before the galaxy underwent collision. We do not find an active galactic nuclei (AGN) from the BPT analysis of a central unresolved source reported earlier using NIR imaging. Our findings provide the preservation of the pre-collisional structures in the inner region of the Cartwheel, an important input to understanding the evolution of collisional galaxy systems, particularly investigating the pre-collisional central region for theoretical studies.
title Unravelling the Post-Collision Properties of the Cartwheel Galaxy: A MUSE Exploration of its Bar and Inner Region
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2310.00584