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June 8, 20260 citationsOpen Access

Paper XXIV: Experimental Proposal: Positronium Gamma-Ray Cavity

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BJBharathi JagadeesanUniversity of Minnesota System

Key Points

  • The aim is to experimentally validate the brane-bulk prediction regarding matter/antimatter annihilation.
  • Utilized an active gamma-ray cavity with positron-emitting 22Na-glycol for positronium formation.
  • Applied a strong magnetic field (∼10 T) to align positronium spins.
  • Employed a coherent RF π-pulse at ~280 GHz to prepare para-positronium state.
  • Predicted enhancement of annihilation rate in a coherent spin state shows correlation with T2* dephasing.
  • Expected outcomes may validate the T2*/T2 hierarchy within the sump framework.

Abstract

A near-term experiment is proposed to test the brane-bulk prediction that matter/antimatter annihilation is controlled by the focal deceleration/acceleration mode interface (Paper VII). The experiment combines: (1) an active gamma-ray cavity lined with a positron-emitting radioactive uid (22Na-glycol) for continuous positronium for- mation; (2) a strong magnetic eld B0 ∼10 T aligning positronium spin states; (3) a coherent RF π-pulse at the electron Larmor frequency (~280 GHz) to prepare the spin-singlet (para-positronium) state before annihilation, enhancing two-photon 511 keV emission; (4) an external positron beam to boost positronium density. The brane-bulk prediction: the annihilation rate in a coherent spin state should show T2* dephasing enhancement consistent with the T2*/T2 hierarchy of the sump framework. Part of the One-Octonion Brane-Bulk Framework series. Anchor DOI: 10.5281/zenodo.19120873. Community: one-octonion-brane-bulk. Author: Bharathi Dasan Jagadeesan, M.D., University of Minnesota. ORCID: 0000-0002-1143-941X.

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Cite This Study

Bharathi Jagadeesan (2026) studied this question.

synapsesocial.com/papers/6a265c1dad53cfb9357c5791https://doi.org/10.5281/zenodo.20564774
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