Star Clusters as Tracers of Interactions in Stephan's Quintet (Hickson Compact Group 92)
K. Fedotov (1), S. C. Gallagher (1), I. S. Konstantopoulos (2), R., Chandar (3), N. Bastian (4), J. C. Charlton (2), B. Whitmore (5), G. Trancho, (6) ((1) The University of Western Ontario, (2) The Pennsylvania State, University, (3) University of Toledo

TL;DR
This study uses high-resolution Hubble images to identify and analyze star clusters in Stephan's Quintet, revealing their ages and formation history to trace galaxy interactions and past events.
Contribution
It provides a detailed age distribution of star clusters across multiple regions in Stephan's Quintet, offering new insights into the timing of galaxy interactions.
Findings
Star clusters in NGC 7319 show continuous star formation.
Old Tail's star clusters formed around 400 Myr ago.
Clusters in NGC 7317 are over 2 Gyr old.
Abstract
Stephan's Quintet (SQ) is a compact group of galaxies that exhibits numerous signs of interactions between its members. Using high resolution images of SQ in B438, V606, and I814 bands from the Early Release Science project obtained with the Wide Field Camera 3 on the Hubble Space Telescope, we identify 496 star cluster candidates (SCCs), located throughout the galaxies themselves as well as in intergalactic regions. Our photometry goes \sim2 mag deeper and covers an additional three regions, the Old Tail, NGC 7317, and the Southern Debris Region, compared to previous work. Through comparison of the B438 - V606 and V606 - I814 colors of the star cluster candidates with simple stellar population synthesis models we are able to constrain cluster ages. In particular, the most massive galaxy of SQ, NGC 7319, exhibits continuous star formation throughout its history, although at a lower rate…
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