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A sea of tides: star formation and the central-satellite dichotomy in a continuum of tidal environments

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arxiv 2009.03329 v1 pith:BNTWUMUN submitted 2020-09-07 astro-ph.GA astro-ph.CO

A sea of tides: star formation and the central-satellite dichotomy in a continuum of tidal environments

classification astro-ph.GA astro-ph.CO
keywords galaxypeakalphacentral-satellitedichotomyformationtidalcontinuum
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The environment-dependent bimodality of the distribution of stellar mass ($M_\ast$) and specific star formation rate (sSFR) of galaxies, and its explanation in terms of the central-satellite dichotomy, form a cornerstone of our current understanding of galaxy evolution in the hierarchical structure formation paradigm. We revisit this framework in the IllustrisTNG simulation in the context of the most extreme local tidal anisotropy $\alpha_{\rm peak}$ experienced by each galaxy over cosmic time, which is an excellent proxy for environmental influence. We show that, while sharing a common monotonic $M_\ast$-$v_{\rm peak}$ relation, central, satellite and `splashback' galaxies define a hierarchy of increasing $\alpha_{\rm peak}$. We also find that the sSFR of objects in small haloes unaffected by feedback from an active nucleus typically decreases with increasing $\alpha_{\rm peak}$. Our results support an alternate viewpoint in which a galaxy can be identified by the value of $\alpha_{\rm peak}$; i.e., rather than being placed on the central-satellite dichotomy, a galaxy is better classified by its location in a continuum of tidal environments. This conceptual shift can potentially yield a more robust understanding of galaxy evolution and the galaxy-dark matter connection, e.g., in accurately modelling subtle effects such as sSFR-induced secondary clustering.

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Cited by 2 Pith papers

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  1. Cosmological constraints from the small scale clustering of Emission Line Galaxies

    astro-ph.CO 2026-04 conditional novelty 6.0

    SHAMe-SF modeling of small-scale DESI ELG clustering delivers 6% precision on σ8 and Ωm h², matching full DR1 results with 1% volume.

  2. Dissecting the Perseus-Pisces supercluster observed with CFHT-MegaCam: Exploring late-type galaxy shape alignments within the local cosmic web

    astro-ph.CO 2026-05 unverdicted novelty 4.0

    Late-type galaxies dominate shape-shape alignments in the filaments of the Perseus-Pisces supercluster while early-types cluster near dense centers, indicating distinct tidal mechanisms out to 1 Mpc/h.