Climate & Environmentpreprint2026-08-02

Hiperuniverse

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Abstract

This volume develops the Hiperuniverse hypothesis as the basis of a new ontology for a unifiedaccount of physical phenomena. The Hiperuniverse is conceived as a single, physically selfcontainedwhole: every operative distinction, process, record, and interaction must have aninternal physical provider. On this basis, spacetime, quantum behavior, matter and interactions,gravitation, and cosmology are to be reconstructed as mutually compatible regimes and readingsof one framework, rather than assembled from independently postulated foundations. The aimis not to reinterpret one established theory or to model a single sector, but to determine whethera common ontological basis can support a controlled reconstruction of modern physics. The program treats mathematical intelligibility as a founding commitment: the ontologyis formulated through explicit objects, hypotheses, transformations, and domains of validity sothat its consequences can be derived, compared, and tested. Established physics enters as anempirical target, comparator, calibration, or limiting standard, never as a hidden constitutivepremise. Definitions, deductions, interpretive bridges, calibrations, and open requirements arekept distinct, and the ontology remains revisable when coherence or empirical contact requires it.Mathematical discipline is therefore instrumental to the physical goal: a coherent, economical,and falsifiable framework capable of unifying explanations without concealing what has beenassumed or what remains unresolved. The volume offers a foundation and a method for thatprogram, not a claim that the unification is complete.i

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View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-02

Authors: Mircea Ghidarcea

Institutions: Universidad Privada Boliviana