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September 12, 2025The Astrophysical Journal4 citationsOpen Access

Primordial Black Hole Triggered Type Ia Supernovae. I. Impact on Explosion Dynamics and Light Curves

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SLShing-Chi LeungSWSeth WaltherKNK. Nomoto

Key Points

  • The passage of a primordial black hole can lead to thermonuclear explosion in a white dwarf, enhancing understanding of supernova mechanisms.
  • Light curves predicted by the model support the Phillips relation, indicating a potential connection in Type Ia supernova triggers.
  • 2D simulations of the explosion dynamics provide insights into the ignition process and nucleosynthesis outcomes.
  • The findings may unify existing models of Type Ia supernovae triggered by different evolutionary paths.

Abstract

Abstract Primordial black holes (PBHs) in the asteroid-mass window are compelling dark matter candidates, made plausible by the existence of black holes and by the variety of mechanisms of their production in the early Universe. If a PBH falls into a white dwarf (WD), the strong tidal forces can generate enough heat to trigger a thermonuclear runaway explosion, depending on the WD’s mass and the PBH’s orbital parameters. In this work, we investigate the WD explosion triggered by the passage of a PBH. We perform 2D simulations of the WD undergoing thermonuclear explosion in this scenario, with the predicted ignition site as a parameter assuming the deflagration–detonation transition model. We study the explosion dynamics, and predict the associated light curves and nucleosynthesis. We find that the model sequence predicts light curves which align with the Phillips relation ( B max versus Δ M 15 ). Our models hint at a unifying approach in triggering Type Ia supernovae without involving two distinctive evolutionary tracks.

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Cite This Study

Leung et al. (2025) studied this question.

synapsesocial.com/papers/68d44b3031b076d99fa548f6https://doi.org/10.3847/1538-4357/adf4e8
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