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How mergers shape galaxy morphology in the IllustrisTNG simulation

Published 14 Aug 2026 in astro-ph.GA | (2608.13996v1)

Abstract: How galaxy mergers drive morphological evolution remains an open question. Traditional views hold that major mergers produce elliptical galaxies, while minor mergers form dispersion-dominated components such as galactic bulges. However, more recent work has challenged this simple picture, suggesting a more complex evolutionary scenario. In this study, we use the IllustrisTNG cosmological simulation to investigate how mergers shape galaxy morphology, across a broad range of galaxy masses and merger mass ratios. Our results show that the post-merger galaxy morphology is primarily determined by three factors: collision angle θ\overlineθ, cold gas fraction fcoldgasf_\mathrm{cold\,gas}, and pre-merger galaxy morphology (B/T),pre\mathrm{(B/T)_{*,pre}}. Specifically, spiral-in mergers with large θ\overlineθ increase the rotational support of the system, allowing the gas to settle into an extended disk. When the system is rich in cold gas, star formation within the newly formed gas disk can further strengthen the disk-dominated structure of the remnant. On the other hand, head-on mergers with small θ\overlineθ typically disrupt ordered galactic motion, producing more dispersion-supported remnants. Overall, we interpret our results within a unified picture of merger-driven morphological transformation in galaxies.

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