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arxiv: 2602.10187 · v2 · pith:IMJL6JXMnew · submitted 2026-02-10 · 🌌 astro-ph.SR · astro-ph.HE· gr-qc

Modern tidal interaction models for rapid binary population synthesis: I. Methods

classification 🌌 astro-ph.SR astro-ph.HEgr-qc
keywords tidaldissipationbinarystellarmagnitudepopulationrapidsynthesis
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In this work, we present an updated prescription of contemporary tidal dissipation theory adapted for rapid binary population synthesis. Our simplified expressions encode the dependence of tidal dissipation on stellar structure, stratification, and tidal forcing frequency, while remaining computationally efficient. We implement these prescriptions in the rapid population synthesis code COMPAS, and demonstrate the self-consistent coupling of tides with stellar evolution and binary properties such as orbital periods, spins, and eccentricities for several representative binary systems. When compared with commonly used tidal prescriptions, our equilibrium tidal dissipation efficiencies can be stronger by 1-2 orders of magnitude for low mass main sequence and giant type stars, and dynamical tides can be stronger by 1-7 orders of magnitude due to the explicit dependence on internal stellar structure and the presence of inertial wave dissipation. Despite our simplistic approach, our models agree with detailed stellar simulations to within an order of magnitude across tidal dissipation mechanisms.

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  1. Modern tidal interaction models for rapid binary population synthesis: II. Binary black hole formation, mergers, and spins

    astro-ph.HE 2026-06 unverdicted novelty 4.0

    Simulations with a new tidal model in COMPAS predict that merging binary black holes from isolated evolution are strongly biased to low effective spins, with one third below 0.05 and only 3% above 0.5, but the high-sp...