This Zenodo record presents a unified collection of five closely related papers developing and applying the framework of phase-selective gravitation and hierarchical realization. The central premise is that gravitation, quantum behavior, and extreme astrophysical phenomena need not be treated as fundamentally distinct domains governed by separate principles, but can instead be understood as different regimes of realization within a single underlying structural field. In this framework, physical reality is described as emerging through recursive selection acting on admissible configurations. Quantum phenomena correspond to shallow, reversible selection prior to realization, while gravitation arises from continued recursive selection acting on already realized structures. Mass is interpreted as stabilized, inward-organized realization, and gravitation as the geometric manifestation of this organization rather than as an independent force. Black holes appear not as objects with exotic interiors, but as boundaries where realization ceases, leaving structure admissible but events unrealizable. The papers collected here develop this perspective from complementary angles: a worked example showing how flat galactic rotation curves arise without dark matter, a demonstration that gravitational lensing is naturally consistent with galactic dynamics within the same effective metric, an interpretation of black holes as realization boundaries explaining shadows, photon rings, and ringdown selectivity, a single-field formulation unifying quantum and gravitational regimes via domain restriction rather than modified dynamics, and a broader conceptual treatment of structure, realization, hierarchy, and termination of physical events. Together, these works form a coherent theoretical program that preserves the empirical successes of standard gravitational and quantum descriptions while offering a minimal, non-ad-hoc reinterpretation grounded in stability, recursion, and realizability. No additional particles, forces, or hidden sectors are introduced. The emphasis throughout is on structural economy, conceptual clarity, and continuity with observation. Included papers: Phase-Selective Gravitation in Galaxies: A Worked Example Phase-Selective Gravitation and Gravitational Lensing: Consistency Without Dark Matter Phase-Selective Gravitation and Black Hole Boundaries: Degenerate Realization and Observable Signatures A Single-Field Formulation of Quantum and Gravitational Regimes via Hierarchical Selection Field and Hierarchies of Physical Realization
Luka Gluvić (Sun,) studied this question.