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Photometric Signature of Ultra-Harmonic Resonances in Barred Galaxies

Authors :
Krishnarao, Dhanesh
Pace, Zachary J.
D'Onghia, Elena
Aguerri, Alfonso L.
McClure, Rachel L.
Peterken, Thomas
Fernandez-Trincado, Jose G.
Merrifield, Michael
Masters, Karen L.
Garma-Oehmichen, Luis
Boardman, Nicholas Fraser
Bershady, Matthew
Drory, Niv
Lane, Richard R.
Krishnarao, Dhanesh
Pace, Zachary J.
D'Onghia, Elena
Aguerri, Alfonso L.
McClure, Rachel L.
Peterken, Thomas
Fernandez-Trincado, Jose G.
Merrifield, Michael
Masters, Karen L.
Garma-Oehmichen, Luis
Boardman, Nicholas Fraser
Bershady, Matthew
Drory, Niv
Lane, Richard R.
Publication Year :
2022

Abstract

Bars may induce morphological features, such as rings, through their resonances. Previous studies suggested that the presence of 'dark-gaps', or regions of a galaxy where the difference between the surface brightness along the bar major axis and along the bar minor axis are maximal, can be attributed to the location of bar corotation. Here, using GALAKOS, a high-resolution N-body simulation of a barred galaxy, we test this photometric method's ability to identify the bar corotation resonance. Contrary to previous work, our results indicate that 'dark-gaps' are a clear sign of the location of the 4:1 ultra-harmonic resonance instead of bar corotation. Measurements of the bar corotation can indirectly be inferred using kinematic information, e.g., by measuring the shape of the rotation curve. We demonstrate our concept on a sample of 578 face-on barred galaxies with both imaging and integral field observations and find the sample likely consists primarily of fast bars.<br />Comment: 16 pages, 14 figures, Accepted for publication in ApJ

Details

Database :
OAIster
Publication Type :
Electronic Resource
Accession number :
edsoai.on1312097638
Document Type :
Electronic Resource