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Compact Binary Merger Rates: Comparison with LIGO/Virgo Upper Limits

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arxiv 1510.04615 v3 pith:NFHN3D2X submitted 2015-10-13 astro-ph.HE gr-qc

Compact Binary Merger Rates: Comparison with LIGO/Virgo Upper Limits

classification astro-ph.HE gr-qc
keywords bh-bhligomergervirgoadvancedmassivebinarydetections
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We compare evolutionary predictions of double compact object merger rate densities with initial and forthcoming LIGO/Virgo upper limits. We find that: (i) Due to the cosmological reach of advanced detectors, current conversion methods of population synthesis predictions into merger rate densities are insufficient. (ii) Our optimistic models are a factor of 18 below the initial LIGO/Virgo upper limits for BH-BH systems, indicating that a modest increase in observational sensitivity (by a factor of 2.5) may bring the first detections or first gravitational wave constraints on binary evolution. (iii) Stellar-origin massive BH-BH mergers should dominate event rates in advanced LIGO/Virgo and can be detected out to redshift z=2 with templates including inspiral, merger, and ringdown. Normal stars (<150 Msun) can produce such mergers with total redshifted mass up to 400 Msun. (iv) High black hole natal kicks can severely limit the formation of massive BH-BH systems (both in isolated binary and in dynamical dense cluster evolution), and thus would eliminate detection of these systems even at full advanced LIGO/Virgo sensitivity. We find that low and high black hole natal kicks are allowed by current observational electromagnetic constraints. (v) The majority of our models yield detections of all types of mergers (NS-NS, BH-NS, BH-BH) with advanced detectors. Numerous massive BH-BH merger detections will indicate small (if any) natal kicks for massive BHs.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

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    gr-qc 2016-02 accept novelty 10.0

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  3. Massquerade: Impacts of Mass Ratio Reversals on Binary Black Hole Merger Rates and Mass Distributions

    astro-ph.HE 2026-05 unverdicted novelty 6.0

    Mass ratio reversals produce qualitatively different contributions to BBH merger rates and masses in COMPAS versus SEVN simulations, with core-growth dominating and most systems arising from massive low-metallicity pr...

  4. Can current models predict the local black hole merger rate?

    astro-ph.HE 2026-06 unverdicted novelty 3.0

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