[6] rxiVerse:2607.0039 [pdf] submitted on 2026-07-21 14:47:55
Authors: Jørgen Ruben Andersen
Comments: 74 Pages.
This work proposes a conjectural background-independent framework in which spacetime, quantum phenomena, and physical fields emerge from an underlying coherence structure governed by a fundamental consistency requirement. The central hypothesis is that physical reality may be described by a complex coherence field, where the amplitude represents local coherence strength and the internal phase encodes transformations within a proposed pentagonal symmetry structure. The five sectors of the pentagonal framework are interpreted not as independent fundamental entities, but as distinct dynamical regimes of a single underlying field.A candidate variational formulation is introduced through an effective action containing gravitational, coherence, interaction, and information-theoretic contributions. The minimal coherence sector is represented by a complex scalar field Lagrangian with spontaneous symmetry breaking, while additional coupling terms are proposed to connect the coherence field to emergent geometry through conformal and Weyl-sector interactions. Within this framework, the effective gravitational response may acquire contributions from an underlying information structure, providing a possible mathematical route toward describing dark-sector phenomena as emergent coherence transformations rather than independent matter components.The proposed framework explores several possible mathematical realizations of the consistency requirement, including variational, cohomological, and information-theoretic formulations. A central conjecture is that these descriptions may represent different mathematical expressions of a common organizing principle underlying physical coherence.The present formulation does not constitute a complete theory of fundamental physics. Key unresolved problems include the derivation of the fundamental action, determination of the underlying symmetry group, construction of a consistent quantum theory, demonstration of the emergence of quantum mechanics and spacetime geometry, and derivation of experimentally testable predictions. The purpose of this work is therefore to establish a mathematically structured research program toward a possible coherence-field formulation of emergent spacetime, dark-sector dynamics, and fundamental physical consistency.
Category: Relativity and Cosmology
[5] rxiVerse:2607.0035 [pdf] submitted on 2026-07-19 20:20:27
Authors: Alberto Forcada
Comments: 71 Pages. TContinuation and culmination of preceding papers published here
Across physical scales—from atoms to galaxies to the universe—systems exhibit spiral morphology, spacing laws, coherence transitions, and null propagation phenomena. Standard physics explains each domain with separate mechanisms: Coulomb potentials, Navier—Stokes equations, Coriolis forces, density waves, and relativistic geodesics. This work develops a unified geometric framework in which these phenomena arise from a single structural object: the dipolar operational field. The theory integrates three geometric pressures—compactification, torsion, and coherence—whose interaction determines mode density, spacing laws, spiral formation, and the null geometry of light. A correction to the dipolar map is introduced: density is not material density but mode density, the number of stable configurations per operational interval. This correction reveals a universal mechanism: physical systems evolve along gradients of mode density, producing spiral waves whose envelope is determined by the ratio α/γ of compactification to torsion. Light is identified as the null spiral mode for which inward and outward geometric pressures balance, yielding the relation c^2=α/γ. This relation, together with spiral arm geometry and torsional mass profiles, allows extraction of the geometric constants α, β, γ from observational data. The framework yields falsifiable predictions across quantum, galactic, and cosmological domains. The result is a unified operational geometry in which spirals, waves, light, matter, and cosmic evolution emerge from the same dipolar structure.
Category: Relativity and Cosmology
[4] rxiVerse:2607.0031 [pdf] replaced on 2026-07-21 10:41:35
Authors: Ricardo J Miralles
Comments: 5 Pages.
This paper addresses the physical origin of gravity within the FCD-RB framework, starting from an elementaryobservation: there is no gravity without matter, so the cause of gravitational attraction must reside in whateverdistinguishes matter from the vacuum. We propose that each matter—antimatter dipole, bound by a trans-braneEinstein—Rosen (ER) bridge, constitutes an ordered defect that subtracts entropy from the gravitational field of the 5Dbulk in its neighbourhood; matter is reinterpreted, literally, as entropy locally subtracted from the background. Weargue that Jacobson’s thermodynamic relation (δQ = TδS) is not applicable to an individual dipole — thermodynamicsis meaningless for a single degree of freedom — but that the indistinguishability of the dipoles, all geometricallyidentical, promotes the microscopic entropic charge to a legitimate ensemble entropy on which Jacobson’sprogramme does operate. The temperature governing the bridge is assigned to the immediate bulk environment of theER, Teff = Tbulk; since the bulk is unique and shared by both branes, all dipoles see the same temperature and the globaluniformity of the gravitational constant emerges automatically, recovering the Newtonian limit and passing theequivalence-principle tests. The inter-brane thermal asymmetry is encoded in a single small parameter ε, constant inspace (hence G constant today) but potentially evolving in cosmic time, predicting a testable G(z) in BBN, CMB andBAO. The result unifies gravity and dark energy as two distinct geometric ports of the same bulk.Keywords: emergent gravity; entropic force; trans-brane dipole; Jacobson thermodynamics; bulk temperature; gravitationalconstant variation; dark energy; equivalence principle; FCD-RB.
Category: Relativity and Cosmology
[3] rxiVerse:2607.0005 [pdf] replaced on 2026-07-19 16:35:23
Authors: Jørgen Ruben Andersen
Comments: 165 Pages.
This work presents a conceptual hypothesis that extends modern physics through seven interconnected chapters, proposing that the consistency requirement — the demand that distinctions and relations remain free of contradiction — constitutes the most fundamental principle of reality, more primitive than energy, space, time, or particles. In the first part (Chapter 49), Einstein's field equations are extended by promoting the Weyl tensor to an active dynamical source alongside an information tensor encoding quantum entanglement, entropy, and relational network structure. Dark matter and dark energy are reinterpreted as localised and accumulated Weyl curvature, connected through a quadrilateral transformation structure in which visible mass, visible energy, dark matter, and dark energy form four conserved sectors related by unitary phase rotations. Neutrino oscillations into sterile states provide the proposed particle-physics mechanism mediating transitions between the visible and dark sectors, with supernovae acting as the primary cosmic drivers. In the second part (Chapter 50), this sector structure is grounded in a deeper ontological layer: an entanglement network whose consistency structure gives rise to space, time, objects, and probability as emergent phenomena. A minimal relational model governed by a single local consistency-copying rule spontaneously generates geometry, temporal ordering, and entanglement-like correlations. Born's quadratic probability rule emerges as a near-inevitable consequence of pairwise consistency evaluation rather than as an independent postulate. Five successive levels of abstraction lead to the conclusion that entanglement is not a property of physical objects but the substrate from which objects emerge. In the third part (Chapter 51), neutron stars and black holes are identified as phase transitions within the entanglement network. Neutron stars represent the first transition into a quantum-macroscopic coherence phase; black holes represent a second transition into a non-local coherence phase of maximal information density without local structure. The event horizon is reinterpreted as an ontological phase boundary. The information paradox is resolved as a logical consequence of the consistency requirement — information is transformed, not destroyed — and the firewall paradox dissolves because entanglement monogamy does not apply within the non-local coherence phase. The quadrilateral transformation structure is extended to a pentagonal structure incorporating a fifth sector, the singular coherence phase, mediated by a proposed fifth neutrino type. In the fourth part (Chapter 52), the Big Bang is identified as a phase transition from maximal global coherence to a phase with emergent local structure, replacing the initial singularity with a critical coherence state. The atemporal entanglement network is proposed as the fundamental ontology from which time itself emerges, reformulating the question of what preceded the Big Bang as a structural rather than temporal question. A logical argument establishes that complete nothingness is self-contradictory and that existence is therefore a logical necessity rather than a contingent event. In the fifth part (Chapter 53), the speed of light is shown to be a geometric necessity rather than an arbitrary constant: the conversion factor between the spatial and temporal projections of the network's coherence structure. The universal speed limit follows from the consistency requirement, since propagation faster than the speed of light would generate causal self-contradictions. Time dilation is reinterpreted as a finite coherence-update capacity distributed between spatial propagation and temporal evolution, reproducing the predictions of special relativity from geometric considerations. In the sixth part (Chapter 54), matter-antimatter asymmetry is addressed through three complementary arguments. Antimatter is identified as matter transformed by a half-turn phase rotation in the internal coherence-transformation space. The observed asymmetry is proposed to originate from spontaneous symmetry breaking at the Big Bang phase transition, frozen into the subsequent classical phase analogously to other symmetry-breaking processes in nature. The consistency requirement further favours stability over exact symmetry, providing a conceptual account of the small but persistent matter excess corresponding to the observed ratio of approximately one part in ten billion. In the seventh part (Chapter 55), the first steps toward a Lagrangian formulation of the pentagonal coherence field theory are presented. The fundamental dynamical variable is identified as a complex coherence field consisting of a local amplitude and a local phase factor, defined background-independently on a relational network of coherence units and their entanglement relations. The discrete Lagrangian on this network, which sums squared differences of the field between connected nodes, produces the standard continuum kinetic term in the large-network limit. A symmetry-breaking potential of Mexican-hat form generates spontaneous phase symmetry breaking, naturally producing the matter-antimatter asymmetry identified in Chapter 54. Four open mathematical problems are identified whose resolution would complete the formalization: the precise continuum limit of the network Laplacian, the determination of whether the phase symmetry is global or local, the mathematical axiomatization of the consistency requirement, and the derivation of the Schrödinger equation and Born's rule as emergent limits of the coherence field dynamics. A directly testable quantitative prediction is identified: the CP-violating phases of the CKM and PMNS mixing matrices are proposed as projections of the internal sector phase angles of the pentagonal transformation structure onto the visible sector, with experimentally measured values available for comparison. The framework generates more than fifteen concrete falsifiable predictions testable with DESI, Euclid, the James Webb Space Telescope, LISA, Einstein Telescope, Cosmic Explorer, IceCube, Hyper-Kamiokande, DUNE, and CMB-S4 within the coming two decades. Throughout, the work is presented as a conceptual hypothesis supported by mathematically motivated conjectures rather than a complete physical theory with a fully specified Lagrangian. Its primary ambition is to identify the appropriate foundational questions and to suggest a coherent direction toward their answers.
Category: Relativity and Cosmology
[2] rxiVerse:2607.0004 [pdf] submitted on 2026-07-03 14:13:51
Authors: Micky Daniel Tortorella
Comments: 9 Pages. Novel Theory of Experience
This thesis proposes that the physical universe serves a unique ontologicalfunction: it is the domain in which abstract information is transformed intoconscious experience. While information may exist as mathematical possibility,symbolic representation, or physical state, experience constitutes a fundamentallydifferent category of reality. Experience is the realization of information assubjective awareness.The defining characteristic of experience is its irreversibility. Once an event hasbeen consciously experienced, it cannot become "unexperienced." Memories mayfade, physical records may disappear, and matter may be rearranged, yet theoccurrence of the experience itself remains an immutable fact within the historyof the universe. In this sense, experience introduces an irreversible dimension toreality analogous to the thermodynamic arrow of time.This thesis argues that consciousness is not merely an emergent property ofcomplex information processing but the mechanism through which informationacquires historical existence. The universe therefore functions not only as a systemthat evolves physical states but also as one that continuously converts potentialinformation into irreversible experiential history.
Category: Relativity and Cosmology
[1] rxiVerse:2607.0002 [pdf] submitted on 2026-07-01 06:52:19
Authors: Zhiqiang Zou
Comments: This is an English version of a theoretical physics manuscript focusing on unified field theory. The submission includes 29 pages of main text.
This work proposes a relativistic scalar-tensor theory to unify galaxy dynamics and cosmology using a fixed acceleration scale a0 ~ 1.2e-10 m/s². By introducing a complex scalar field Psi, the model naturally generates dark matter as an ultralight scalar field and dark energy via vacuum energy. We validate the theory against SPARC galaxy rotation curves and solar system tests. Furthermore, we make several key predictions: (1) A unique six-polarization gravitational wave signature detectable by LISA; (2) A specific tensor-to-scalar ratio r testable by future CMB missions; (3) A natural resolution of the Hubble tension. This framework provides a coherent explanation for both cosmic and galactic phenomena.
Category: Relativity and Cosmology