Black hole mimickers: from theory to observation
Abstract
The black hole paradigm, while remarkably successful, raises fundamental questions-both classical and quantum-about the nature of spacetime, horizons, and singularities. Black hole mimickers, horizonless ultra-compact objects, have emerged as potential alternatives that seek to resolve some of these puzzles while remaining consistent with current observational constraints. Recent breakthroughs in gravitational-wave astronomy and horizon-scale electromagnetic imaging have opened new avenues to test this paradigm-making this an opportune moment to systematically investigate such alternatives. This vision document presents a snapshot of the field as discussed at the Black Hole Mimickers: From Theory to Observation workshop, where experts from gravitational wave astronomy, very long baseline interferometry, numerical and mathematical relativity, and high-energy physics converged to assess the current frontiers. By highlighting key open questions and proposing concrete pathways forward, this document aims to guide future efforts to probe the nature of compact objects. As the field stands at the crossroads of theoretical innovation and observational breakthroughs, we outline strategies to harness upcoming observational capabilities to fundamentally test the black hole paradigm.
Cite
@article{arxiv.2505.09014,
title = {Black hole mimickers: from theory to observation},
author = {Cosimo Bambi and Ramy Brustein and Vitor Cardoso and Andrew Chael and Ulf Danielsson and Suvendu Giri and Anuradha Gupta and Pierre Heidmann and Luis Lehner and Steven Liebling and Andrea Maselli and Elisa Maggio and Samir Mathur and Lia Medeiros and Alex B. Nielsen and Héctor R. Olivares-Sánchez and Paolo Pani and Nils Siemonsen and George N. Wong},
journal= {arXiv preprint arXiv:2505.09014},
year = {2025}
}
Comments
Proceedings of the "Black Hole Mimickers: From Theory to Observation" workshop organized at the Princeton Center for Theoretical Sciences (PCTS), Princeton University, NJ, USA from March 3-5 2025