English

Probing Exotic Astrophysical Dark objects through Astrometric Microlensing from Gaia

Astrophysics of Galaxies 2025-12-01 v1 Cosmology and Nongalactic Astrophysics General Relativity and Quantum Cosmology High Energy Physics - Phenomenology

Abstract

We present the first comprehensive study of astrometric microlensing by exotic astrophysical dark objects, focusing on two theoretically motivated models -- Q-ball and boson star. We demonstrate that these extended objects generate distinctive signatures that depart markedly from point-mass lenses like primordial black holes. The smoking-gun signature for these exotic objects is the emergence of caustics, which form when the lens radius is below a critical threshold. Crossing these caustics induces discontinuous jumps in the images-centroid trajectory, a distinctive feature of these extended dark objects. We show these patterns are sensitive to the internal mass profile, with boson stars generating larger, more prominent caustic structures than Q-balls -- enabling the models to be distinguished. Using the Gaia DR3 stellar catalogue, we forecast a high-yield discovery potential, up to 6000\sim 6000 detectable astrometric microlensing events for a 10-year mission, peaking for M110 MM \sim 1-10~M_\odot and R10 AUR \lesssim 10~\text{AU}. In the absence of anomalous detections, Gaia can set powerful 90% confidence level constraints on the fractional abundance of these exotic objects, reaching fDM103f_{\mathrm{DM}} \le 10^{-3} in the peak region which covers masses from 101107 M10^{-1}-10^{7}~M_{\odot} and radii R<106 AUR<10^{6}~\text{AU}. Crucially, these projected astrometric microlensing constraints are significantly stronger than existing photometric microlensing limits in the 110 M1-10~M_\odot mass range. This work establishes astrometric microlensing with Gaia as a powerful, complementary, and near-future probe with the potential to discover exotic astrophysical dark objects.

Keywords

Cite

@article{arxiv.2511.21823,
  title  = {Probing Exotic Astrophysical Dark objects through Astrometric Microlensing from Gaia},
  author = {Lalit Singh Bhandari and Vikram Rentala and Arun M. Thalapillil and Himanshu Verma},
  journal= {arXiv preprint arXiv:2511.21823},
  year   = {2025}
}

Comments

66 pages, 20 figures, 1 table

R2 v1 2026-07-01T07:56:59.676Z