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Self-interacting scalar field distributions around Schwarzschild black holes

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arxiv 2211.10456 v1 pith:ANJBFQDZ submitted 2022-11-18 gr-qc

classification gr-qc
keywords blackscalarself-interactionaroundconfigurationsdistributioneffectfield
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Long-lived configurations of massive scalar fields around black holes may form if the coupling between the mass of the scalar field and the mass of the black hole is very small. In this work we analyze the effect of self-interaction in the distribution of the long-lived cloud surrounding a static black hole. We consider both attractive and repulsive self-interactions. By solving numerically the Klein Gordon equation on a fixed background in the frequency domain, we find that the spatial distribution of quasi stationary states may be larger as compared to the non interacting case. We performed a time evolution to determine the effect of the self-interaction on the life time of the configurations our findings indicate that the contribution of the self-interaction is subdominant.

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  1. Bounds on PBH fraction in a stimulated axion/ALP decay scenario

    hep-ph 2025-06 conditional novelty 6.0 of 10

    Stimulated axion decay around superradiant primordial black holes yields photon fluxes that exceed observed backgrounds, forcing f_PBH < 10^-17 for PBH masses 10^-19 to 10^-7 solar masses.

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