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Constraints on mass ejection in black hole formation, derived from black hole X-ray binaries

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arxiv astro-ph/9911054 v1 pith:GKTV5GGD submitted 1999-11-04 astro-ph

classification astro-ph
keywords blackmassholebinariesvelocitiesx-rayformationejected
verification ladder T0 review T1 audit T2 compute T3 formal

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Both the recently observed high runaway velocities of Cyg X-1 (~50 km/s) and X-ray Nova Sco 1994 (> ~100 km/s) and the relatively low radial velocities of the black hole X-ray binaries with low mass donor stars, can be explained by symmetric mass ejection in the supernovae (SNe) which formed the black holes in these systems. Assuming symmetric mass ejection in black hole formation, we estimate the amount of mass that must have been ejected in the stellar core collapse in order to explain the velocities of the above X-ray binaries. We find that at least 2.6 M_sun and 4.1 M_sun must have been ejected in the formation of Cyg X-1 and Nova Sco, respectively. A similar mass loss fraction (f = 0.35) for the black hole binaries with low mass donors, gives low velocities, in agreement with the observations. We conclude that the black holes in X-ray binaries are all consistent with being formed in a successful SN in which mass is ejected. A possible kick at the formation of the black hole is not needed to explain their space velocities.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 10 citations worldwide. Full citation record

  1. Mixed origins: strong natal kicks for some black holes and none for others

    astro-ph.GA 2024-11 conditional novelty 6.0 of 10

    A Gaia-based kinematic comparison shows black holes have mixed natal kicks: several are much faster than 90% of their local stars, while others match the local population, supporting both strong-kick and weak-kick for...

  2. Further evidence for natal kick segregation by spectral type in high-mass X-ray binaries

    astro-ph.HE 2025-09 conditional novelty 5.0 of 10

    High-mass X-ray binaries with Be companions predominantly move slower than 40 km/s, while those with supergiant companions predominantly move faster, a statistically robust separation likely reflecting different natal kicks.

  3. Compact Object Astrophysics with Frontline Astrometry

    astro-ph.HE 2026-05 unverdicted novelty 2.0 of 10

    Review of high-precision astrometry applications to compact object astrophysics, emphasizing Gaia DR3 evidence for mass-dependent peculiar velocities and NS-BH similarities.

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