English

Analysis on the black hole formations inside old neutron stars by isospin-violating dark matter with self-interaction

High Energy Physics - Phenomenology 2020-08-14 v2 High Energy Astrophysical Phenomena

Abstract

Fermionic dark matter (DM) with attractive self-interaction is possible to form black holes (BH) inside the Gyr-old neutron stars (NS). Therefore by observing such NS corresponding to their adjacent DM environments can place bounds on DM properties, eg. DM-baryon cross section σχb\sigma_{\chi b}, DM mass mχm_{\chi}, dark coupling αχ\alpha_\chi and mediator mass mϕm_\phi. In case of isospin violation, DM couples to neutron and proton in different strengths. Even NS is composed of protons roughly one to two percent of the total baryons, the contribution from protons to the DM capture rate could be drastically changed in the presence of isospin violation. We demonstrate that this effect can be important in certain cases. On the other hand, DM-forming BH inside the star is subject to many criteria and the underlying dynamics is rich with interesting features. We also systematically review the relevant physics based on the virial equation. Moreover, an accompanied python package \texttt{dm2nsbh} to realize the mechanism is also released on the github for other relevant research.

Keywords

Cite

@article{arxiv.2004.05312,
  title  = {Analysis on the black hole formations inside old neutron stars by isospin-violating dark matter with self-interaction},
  author = {Guey-Lin Lin and Yen-Hsun Lin},
  journal= {arXiv preprint arXiv:2004.05312},
  year   = {2020}
}

Comments

29 pages, 8 figures, revised and JCAP accepted