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Ejection of hypervelocity stars by the (binary) black hole(s) in the Galactic center

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arxiv astro-ph/0309084 v1 pith:AIBLAWBX submitted 2003-09-03 astro-ph

Ejection of hypervelocity stars by the (binary) black hole(s) in the Galactic center

classification astro-ph
keywords starshypervelocityaxisbinaryblackholemechanismradius
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study three processes that eject hypervelocity (>10^3 km/s) stars from the Galactic center: (i) close encounters of two single stars; (ii) tidal breakup of binary stars by the central black hole, as originally proposed by Hills; and (iii) three-body interactions between a star and a binary black hole (BBH). Mechanism (i) expels hypervelocity stars to the solar radius at a negligible rate, ~10^{-11}/yr. Mechanism (ii) expels hypervelocity stars at a rate ~ 10^{-5}(\eta/0.1)/yr, where \eta is the fraction of stars in binaries with semimajor axis a_b<~0.3 AU. For solar-mass stars, the corresponding number of hypervelocity stars within the solar radius R_0=8 kpc is ~60(\eta/0.1)(a_b/0.1 AU)^{1/2}. For mechanism (iii), Sgr A^* is assumed to be one component of a BBH. We constrain the allowed parameter space (semimajor axis, mass ratio) of the BBH. In the allowed region (for example, semimajor axis of 0.5x10^{-3} pc and mass ratio of 0.01), the rate of ejecting hypervelocity stars can be as large as ~10^{-4}/yr and the expected number of hypervelocity stars within the solar radius can be as large as ~10^3. Hypervelocity stars may be detectable by the next generation of large-scale optical surveys.

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Forward citations

Cited by 2 Pith papers

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

  1. Formation of Close Binaries through Massive Black Hole Perturbations and Chaotic Tides

    astro-ph.GA 2025-11 unverdicted novelty 6.0

    Up to 50% of wide binaries in the empty loss-cone regime around massive black holes harden into close binaries via repeated MBH perturbations and chaotic stellar tides rather than undergoing Hills breakup.

  2. Is S301 the Captured Companion of the Hypervelocity Star S5-HVS1?

    astro-ph.GA 2026-07 accept novelty 5.0

    S301's orbit and photometric mass satisfy the predicted relation for the captured companion of S5-HVS1, though catalog-level statistical evidence remains weak until the selection function is calibrated.