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Identifying Mergers Using Quantitative Morphologies in Zoom Simulations of High-Redshift Galaxies

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arxiv 1803.02374 v1 pith:Q2GTLTZU submitted 2018-03-06 astro-ph.GA

classification astro-ph.GA
keywords galaxiesmergersgalaxyidentifyingmergercosmicmeasuresmorphological
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Non-parametric morphology measures are a powerful tool for identifying galaxy mergers at low redshifts. We employ cosmological zoom simulations using Gizmo with the Mufasa feedback scheme, post-processed using 3D dust radiative transfer into mock observations, to study whether common morphological measures Gini G, M20, concentration C, and asymmetry A are effective at identifying major galaxy mergers at z ~ 2 - 4, i.e. "Cosmic Noon". Our zoom suite covers galaxies with 10^8.6 < M_* < 10^11 M_sun at z ~ 2, and broadly reproduces key global galaxy observations. Our primary result is that these morphological measures are unable to robustly pick out galaxies currently undergoing mergers during Cosmic Noon, typically performing no better than a random guess. This improves only marginally if we consider whether galaxies have undergone a merger within the last Gyr. When also considering minor mergers, galaxies display no trend of moving towards the merger regime with increasing merger ratio. From z = 4 -> 2, galaxies move from the non-merger towards the merger regime in all statistics, but this is primarily an effect of mass: Above a given noise level, higher mass galaxies display a more complex outer morphology induced by their clustered environment. We conclude that during Cosmic Noon, these morphological statistics are of limited value in identifying galaxy mergers.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 11 citations worldwide. Full citation record

  1. HI asymmetries in spatially resolved SIMBA galaxies

    astro-ph.GA 2025-06 conditional novelty 6.0 of 10

    In the SIMBA simulation, galaxies that recently merged or interacted have more asymmetric neutral hydrogen gas, and this signature is clearer in gas maps than in gas spectra.

  2. WALLABY Pilot Survey & ASymba: Comparing HI Detection Asymmetries to the SIMBA Simulation

    astro-ph.GA 2025-01 conditional novelty 6.0 of 10

    A new mock-observation method and a comparison of WALLABY and SIMBA H I asymmetries show hints of more highly asymmetric galaxies in the real sky, but not at a statistically significant level.

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