English

The existence and upper bound for stable photon spheres in static spherically symmetric black holes

General Relativity and Quantum Cosmology 2025-09-16 v2

Abstract

In this work, we establish the existence conditions and a universal upper bound on the radius of stable photon spheres (SPS) outside the event horizons of static, spherically symmetric, asymptotically flat black holes surrounded by matter fields. We prove that stable photon spheres exist if the external matter satisfies specific conditions. Furthermore, under the additional assumption of a monotonically decreasing mass-radius ratio m(r)/r3m(r)/r^3 outside the horizon, we derive a strict upper bound on the radius rspsr_{\mathrm{sps}} of any stable photon sphere: rsps<6Mr_{\mathrm{sps}}<6M, where MM is the asymptotic mass of the black hole. This bound is independent of specific black hole solutions and broadly applies to hairy black holes and other configurations with external matter fields meeting the stated energy conditions. Our results resolve fundamental questions regarding the existence and spatial constraints on stable photon orbits, with implications for gravitational lensing, accretion disk dynamics (e.g., the Aschenbach effect), and black hole shadow observations.

Keywords

Cite

@article{arxiv.2508.19823,
  title  = {The existence and upper bound for stable photon spheres in static spherically symmetric black holes},
  author = {Yong Song and Jiaqi Fu and Yiting Cen},
  journal= {arXiv preprint arXiv:2508.19823},
  year   = {2025}
}

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6 pages