English

Do Primordial Black Hole Clusters Survive the Galaxy? Collisional Disruption and Microlensing Implications

Cosmology and Nongalactic Astrophysics 2026-07-10 v1 Astrophysics of Galaxies

Abstract

We study the collisional disruption of primordial black hole (PBH) clusters in the Milky Way halo. Encounters between clusters strip PBHs into a diffuse component, and the fraction of PBH mass in this smooth component along a sightline determines how microlensing constraints divide between isolated compact objects and extended cluster lenses. We combine an analytic NFW-based collision-rate model, 7272 direct N-body binary collision simulations that calibrate the escaped-mass fraction as a universal function f~(v~,b~)\tilde f(\tilde v,\tilde b) of the relative velocity and impact parameter in units of the cluster velocity scale and half-mass radius, and cosmological N-body simulations of a Milky Way-like halo (M2008×1011MM_{200}\simeq 8\times10^{11}\,M_\odot, c20011c_{200}\simeq 11) that record the encounter history of every cluster from z=9z=9 to z=0z=0. For 10610^6 and 107M10^7\,M_\odot clusters -- bracketing the maximum mass in the Carr et al.\ formation scenario -- the local encounter rate at the Solar circle is 2.9×1032.9\times10^{-3} and 1.2×102Myr11.2\times10^{-2}\,\rm Myr^{-1}, consistent with the simulations to within 40%{\sim}40\%. Because the peak-disruption velocity of Carr-radius clusters (1212--20kms120\,\rm km\,s^{-1}) lies far below typical halo encounter velocities, disruption accumulates through many weak encounters, most effectively during the early, cold phases of halo assembly: half of the total mass loss is inflicted before z2z\approx2, a channel that z=0z=0 analytic estimates miss entirely. The surviving mass fraction at the Solar circle is S0.50S\simeq0.50 (106M10^6\,M_\odot) and 0.040.04 (107M10^7\,M_\odot), and the DM-mass-weighted smooth fraction toward the LMC and SMC is 0.490.49 and 0.920.92, respectively. Cluster-cluster disruption is thus substantial over the Galaxy's lifetime, and reanalyses of microlensing surveys must account for the radially varying smooth fraction fsm(r)f_{\rm sm}(r) derived here.

Keywords

Cite

@article{arxiv.2607.09918,
  title  = {Do Primordial Black Hole Clusters Survive the Galaxy? Collisional Disruption and Microlensing Implications},
  author = {M. V. Tkachev and S. V. Pilipenko},
  journal= {arXiv preprint arXiv:2607.09918},
  year   = {2026}
}

Comments

15 pages, 7 figures