Published May 30, 2026
| Version 0-CCLXX
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BraneBulk Omnibus 0-CCLXX: Complete Compilation of the One-Octonion Brane-Bulk Framework (Papers 0 through CCLXX)
Description
Complete compilation of the One-Octonion Brane-Bulk (OOB) framework, Papers 0 through CCLXX (271 numbered papers including Paper 0). This release adds two new papers on top of the CCLXVIII-tagged omnibus (1665 pp):
Paper CCLXIX (The Truncated Photon as Klein Quartic Boundary Layer, 7 pp): Response to Rukan, Gulla, and Skaar (PRL accepted 18 May 2026) on the truncated-photon state. The OOB framework identifies the non-classical transition region of the truncated photon with the Klein quartic geodesic boundary layer separating the brane Im(O) from the bulk (e_0 scalar). The shutter is a rectangular temporal window; its Fourier transform is a sinc, and the resulting mode mismatch generates a compound-geometric (not Poissonian) photon-number distribution. The sinc zero-spacing maps to the Klein ladder eigenvalues {2 - sqrt(3), 1, 2, 3, 2 + sqrt(3), 4} summing to 14 = dim(G_2). New exact identity: f_bulk = 2 pi * arccosh(3) / 300 = 0.036919, matching the canonical f_bulk = 3.6917% to 0.005%. Three predictions P103-P105.
Paper CCLXX (Acero+ Formal Fermi-LAT Analysis of SN 2017egm -- Quantitative Framework Response, 5 pp): Quantitative response to the Fermi-LAT Collaboration formal analysis (Acero et al., arXiv:2605.29909, 119 authors, A&A submission, 28 May 2026). SN 2017egm is the only significant detection in the 6-event SLSN sample (peak TS=33, >5 sigma); Bayesian-block window 50-162 d post-explosion (112 days); power-law Gamma = 2.17 +/- 0.23. CSM ruled out on timing and L_gamma/L_opt grounds; magnetar requires low nebular magnetization or faster-than-dipole spin-down. Bin-by-bin f_bulk(E) = 1 - sinc^2(E/2 m_pi) evaluation confirms CCLVII-P4 (270 MeV spectral feature) consistent with the TS = 1.2 to 18.2 transition between bins 1 and 2; CCLVII-P5 (gamma/optical timing offset) consistent with Bayesian-block window matching forced-EC shock-front timing to <= 10%. Energy budget: observed 1.12e50 erg vs CCLVII channel-(i) prediction 1.2e49 erg = 9.3x ratio, empirically anchoring channel-(ii) geometric amplification A_(ii) ~ 9.3 within the original 10-100x honest-scope range. Three predictions: CCLXX-P1 finer-binned LAT re-analysis at 100-500 MeV; CCLXX-P2 CTAO follow-up at <140 Mpc with framework spectral turnover near 100 GeV; CCLXX-P3 population test on 5 non-detection SLSNe vs M(Ni-56) saturation threshold.
Build: 1677 pages, 25.27 MB. Compiled 2026-05-30 by Bharathi Dasan Jagadeesan, M.D., University of Minnesota CMRR. ORCID 0000-0002-1143-941X. CC-BY-4.0.
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