MODULAR QUANTUM ENTANGLEMENT, RADIATION-INFORMATION, AND MODAL OBJECTIVITY
This article develops an expanded critical-propositional analysis of D. Hucul, I. V. Inlek, G. Vittorini, C. Crocker, S. Debnath, S. M. Clark, and C. Monroe’s experiment, “Modular Entanglement of Atomic Qubits Using Photons and Phonons,” published in Nature Physics 11, 37–42, in systematic dialogue with the Theory of Objectivity (TO) formulated by Vidamor Cabannas and Denivaldo Silva. Hucul et al. demonstrated a modular quantum architecture in which three trapped 171Yb+ atomic-ion qubits distributed between two physically separated modules were connected through two complementary mediating systems. Remote entanglement between modules was generated probabilistically through spontaneously emitted photons, optical interference, Bell-state-sensitive coincidence detection, and heralding, whereas deterministic entanglement between ions within the same module was established through Coulomb-coupled phonon modes. The experiment achieved an average remote Bell-state fidelity of Fremote = 0.78 ± 0.03, a remote entanglement generation rate of approximately R = 4.5 s−1 , a coherence time of approximately τ = 1.12 s, and intramodular entanglement fidelity of approximately Flocal = 0.85 ± 0.01. It further integrated photonic and phononic buses to produce experimentally observable three-particle correlations. The analysis examines possible correspondences between these results and the seven Absolute Truths of TO, while maintaining a rigorous distinction among modal necessity, empirical compatibility, indirect corroboration, and theoretical identity. Par- ticular attention is given to VA2, concerning the individualized field associated with each element; VA4, concerning boundary and interface; VA5, according to which an element must be observed or situated within the frequency relation of at least two other elements for logical existence; VA6, concerning composition; and VA7, associated in the contemporary formulation of TO with transcendent knowledge or information generated in atomic relations and considered equivalent to atomic radiations. The Hucul experiment is especially significant for the latter proposition because spontaneously emitted radiation physically carries quantum correlations dependent on atomic states and can mediate the constitution of new atom-atom relations across spatially separated modules. The article also analyzes possible relations with TO’s phenomenic elements, Inducing Effects, cosmogonic theorem, and cosmological Eras. It argues that Hucul et al. provide substantial empirical material for constructing operational bridges concerning radiation-information, relational composition, fields, frequencies, interfaces, and non-anthropocentric physical observation. Nevertheless, the experiment does not establish the modal necessity of TO’s axioms, does not empirically demonstrate logical Nothingness, and does not directly verify its cosmogenesis or cosmological Eras. Its strongest contribution to TO is therefore not a confirmation of the theory as a whole but the empirical realization of a class of physical processes that can be translated into explicit and measurable bridge propositions. On this basis, the article assigns Hucul et al. a dialogue score of 8.0/10 relative to TO. Keywords: Theory of Objectivity; modular quantum computing; quantum entangle- ment; atomic qubits; photons; phonons; radiation-information; modal necessity; atomic relations; non-anthropocentric observation; Inducing Effects; phenomenic elements; Vidamor Cabannas; Denivaldo Silva; Hucul; quantum information.
Authors
- Vidamor Cabannas
Publication Details
- Journal
- Open Science Framework
- Published
- 2026-09-13
- DOI
- https://doi.org/10.17605/osf.io/ha7md
- Primary Topic
- Quantum Mechanics and Applications
- Type
- article
- Field-Weighted Citation Impact
- 0.00