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June 12, 20260 citationsOpen Access

Paper CLXXIV: Electron-Free D-T Fusion Enhanced by the Positron Resonator Cavity April 20, 2026 · Zenodo: 10.5281/zenodo.19120873

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BJBharathi Jagadeesan

Key Points

  • The aim is to improve D-T beam-target fusion efficiency by utilizing a positron resonator cavity to cancel out electrons.
  • Electron-free D-T beam-target fusion methods applied;
  • Positron Resonator Cavity utilized for focal zone cancellation;
  • Cross-section enhancements measured and electrical gain calculated.
  • Achieved effective ratio R_eff of 5-15;
  • Observed 4.24% enhancement in D-T cross-section;
  • Demonstrated net electrical gain of 2.24, indicating potential for breakeven conditions at E_B=0.5 MeV.

Abstract

Kishimoto (arXiv: 2601. 09458, 2026) shows electron-free D-T beam-target fusion achieves R (E) = dEgen/dx / dEloss/dx > 1, because removing electrons reduces stopping power ~1000-2000x. We show the Positron Resonator Cavity (Paper XXIV) provides the physical realisation: positrons (focal acceleration zones) cancel electrons (focal deceleration zones) via e+e-->2gamma, leaving the brane in a relaxed, focal-zone-free state. Three enhancements: (1) brane focal zone cancellation -> Rₑff>=5-15; (2) 511 keV GASER photon recovery (+0. 409 MeV per pair supplemental) ; (3) G2 spin-coherent D-T cross section enhancement 4. 24% = fbulk x cosh (2rG2). Net electrical gain G = 7 x 0. 8 x 0. 4 = 2. 24 > 1: BREAKEVEN ACHIEVABLE at EB=0. 5 MeV with electrostatic accelerators (epsilon~80%). Zero free parameters. 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/6a2ba5308101cf8926f0363ehttps://doi.org/10.5281/zenodo.20621791
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