Cosmos Week
Probing Inflationary Origins of Primordial Black Holes with LIGO--Virgo--KAGRA O1--O4a data
CosmologiaEdição em portuguêsPreprintResultado provisório

Probing Inflationary Origins of Primordial Black Holes with LIGO--Virgo--KAGRA O1--O4a data

Large primordial curvature perturbations not only produce primordial black holes but also inevitably source a scalar-induced stochastic gravitational-wave background upon horizon.

Fonte original citada e enquadrada editorialmente pelo Cosmos Week. arXiv Cosmology
Assinatura editorialRedação do Cosmos Week
Publicado11 set 2026 13h53
Atualizado2026-09-11
Tipo de coberturaPreprint
Nível de evidênciaResultado provisório
Leitura4 min de leitura

Pontos-chave

  • Em foco: Large primordial curvature perturbations not only produce primordial black holes but also inevitably source a scalar-induced stochastic
  • Detalhe: Resultado ainda sem revisão por pares
  • Leitura editorial: resultado provisório, ainda sem revisão por pares formal.
Texto completo

Large primordial curvature perturbations not only produce primordial black holes but also inevitably source a scalar-induced stochastic gravitational-wave background upon horizon reentry. Large primordial curvature perturbations not only produce primordial black holes (PBHs) but also inevitably source a scalar-induced stochastic gravitational-wave background upon horizon reentry.

Both individuals and organizations that work with arXivLabs have embraced and accepted our values of openness, community, excellence, and user data privacy. ArXiv is committed to these values and only works with partners that adhere to them.

Have an idea for a project that will add value for arXiv's community? . Abstract: Large primordial curvature perturbations not only produce primordial black holes (PBHs) but also inevitably source a scalar-induced stochastic gravitational-wave background upon horizon reentry.

We analyze the combined LIGO--Virgo--KAGRA O1--O4a data to constrain two representative inflationary mechanisms for generating such perturbations: ultra-slow-roll inflation and an inflationary phase transition. Detecting no evidence for either scenario, we place 95% credible upper limits on the curvature-spectrum amplitude across the frequency range accessible to ground-based interferometers.

Translated into the PBH context, these limits already exceed conventional constraints, probing abundance fractions far below unity. Our results remain robust even when the PBHs themselves are too rare to be directly detected or have evaporated.

This work demonstrates that stochastic gravitational-wave observations offer a powerful and complementary probe of small-scale inflationary physics and PBH formation, with upcoming interferometers promising to extend sensitivity to a wider range of inflationary epochs and PBH.

Fonte