2025/10/07 by Eren Erberk Erkul, Erkul, Eren Erberk
Physics and Astronomy · #Black Holes and Theoretical Physics
paper · pdf · doi:10.48550/arxiv.2510.06428
We propose that black holes are soliton-esque objects, where gravitational collapse is balanced by quantum vacuum dispersion, modeled via \(R+αR2\) gravity. Classical singularities are replaced by oscillating, finite-radius cores, thereby evading static no-go theorems. The event horizon is replaced by the Lamarina, a surface of maximum redshift whose surface geometry yields Hawking-like radiation with corrections. The Raychaudhuri equations impose a Dyson-type ceiling on the maximum radiated power \((P∞ \lesssim c5/G)\), while effective field theory matching dictates a universal minimum Lamarina radius set by the dispersion scale.