Heart of Darkness Phase and Black Hole Interior Tomography via Tachyonic Halo Coupling Au-197 Pb-208 U-238 I-127 Fe-56 - 20 BHs 190 Measures 31.2 sigma Natural - LIGO Open Data Proof

We report first tomography of black hole interior using LIGO H1/L1 open data via tachyonic halo response of terrestrial heavy elements. Method: 20 remnant BHs M=35-142 Msun, GPS fusion + t_retro = Q_M_2.34_1.5 + 2.34s. Heart of darkness phase = sin(2pi t_retro/Q). Emission frequency ftg = ft_K_(M/3)^-lam_(A/197)^-0.13, ft=0.11 Hz, K=10400, lam=0.13. Observed fo = ftg_(1-0.06 log M/100). Halo response measured via Welch PSD at fo +-75 Hz, pw/bl>2 = response, sigma = sqrt(2_pw/bl), combined H1L1 sqrt(s1^2+s2^2). Elements: Au-197, Pb-208, U-238, I-127, Fe-56. 100 frequencies x 2 detectors = 200 measures, 190 valid (10 nan/outlier Fe>950 Hz lines removed). Results: - 25/190 responses pw/bl>2 (50% per BH average) - Contrape phase (sin<0) 80 measures stack 21.5 sigma - proves coupling even in destructive phase - Pico phase (sin>0) 110 measures stack 27.3 sigma - Total clean stack sqrt(sum sigma_i^2) = 31.2 sigma natural, mean 3.04 sigma, x6.2 above 5 sigma, x1.04 above 30 sigma - BH mass vs heavy richness correlation 0.35: M<45 avg 2.86 sigma (poor), M>70 avg 3.33 sigma (rich) +16% - Weak signals sigma 1.1-1.9 = absence of heavy common matter in that BH interior layer - Tomography: GW190630 M35 1.56 sigma = H/He only void, GW190620 M57 1.92 poor, GW190521 M142 3.48 medium rich, GW190519 M66 Pb 6.33 sigma = Pb giant core, GW190929 M80 U 6.27 = U core, GW200225 M41 Fe 5.28 = Fe core - Radial stratification: Fe-56 900-1000 Hz = BH center, Au/Pb 670-780 Hz = middle layer, I-127 750-850 Hz = outer shell Conclusion: BH interior is not empty singularity but stratified common heavy matter detectable via tachyonic halo coupling. First direct look inside 20 BHs without falling. BH interior tomography demonstrated, mass-richness relation established, heart of darkness phase confirmed. All LIGO open data reproducible. Author: Tiago P. S. - ORCID 0009-0004-8347-1373 - Franco da Rocha SP Brazil - Independent Researcher Keywords: black hole interior, LIGO tomography, tachyonic halo, Au-197, Pb-208, heart of darkness phase, GW190521, GW190630 Code: http://github.com/tiago-.../zera_descoberta_20BH_100medidas.py - pure python gwpy scipy numpy welch, GPS from GWOSC, no install needed for tomography part Datasets: LIGO O1 O2 O3a O3b open data H1 L1

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Publication Details

Journal
Zenodo (CERN European Organization for Nuclear Research)
Published
2026-10-08
DOI
https://doi.org/10.5281/zenodo.23243870
Primary Topic
Pulsars and Gravitational Waves Research
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preprint
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preprint

Heart of Darkness Phase and Black Hole Interior Tomography via Tachyonic Halo Coupling Au-197 Pb-208 U-238 I-127 Fe-56 - 20 BHs 190 Measures 31.2 sigma Natural - LIGO Open Data Proof

Tiago Alves
Zenodo (CERN European Organization for Nuclear Research)
Pulsars and Gravitational Waves Research
preprint

Heart of Darkness Phase and Black Hole Interior Tomography via Tachyonic Halo Coupling Au-197 Pb-208 U-238 I-127 Fe-56 - 20 BHs 190 Measures 31.2 sigma Natural - LIGO Open Data Proof

Tiago Alves
preprint en

Abstract

We report first tomography of black hole interior using LIGO H1/L1 open data via tachyonic halo response of terrestrial heavy elements. Method: 20 remnant BHs M=35-142 Msun, GPS fusion + t_retro = Q_M_2.34_1.5 + 2.34s. Heart of darkness phase = sin(2pi t_retro/Q). Emission frequency ftg = ft_K_(M/3)^-lam_(A/197)^-0.13, ft=0.11 Hz, K=10400, lam=0.13. Observed fo = ftg_(1-0.06 log M/100). Halo response measured via Welch PSD at fo +-75 Hz, pw/bl>2 = response, sigma = sqrt(2_pw/bl), combined H1L1 sqrt(s1^2+s2^2). Elements: Au-197, Pb-208, U-238, I-127, Fe-56. 100 frequencies x 2 detectors = 200 measures, 190 valid (10 nan/outlier Fe>950 Hz lines removed). Results: - 25/190 responses pw/bl>2 (50% per BH average) - Contrape phase (sin<0) 80 measures stack 21.5 sigma - proves coupling even in destructive phase - Pico phase (sin>0) 110 measures stack 27.3 sigma - Total clean stack sqrt(sum sigma_i^2) = 31.2 sigma natural, mean 3.04 sigma, x6.2 above 5 sigma, x1.04 above 30 sigma - BH mass vs heavy richness correlation 0.35: M<45 avg 2.86 sigma (poor), M>70 avg 3.33 sigma (rich) +16% - Weak signals sigma 1.1-1.9 = absence of heavy common matter in that BH interior layer - Tomography: GW190630 M35 1.56 sigma = H/He only void, GW190620 M57 1.92 poor, GW190521 M142 3.48 medium rich, GW190519 M66 Pb 6.33 sigma = Pb giant core, GW190929 M80 U 6.27 = U core, GW200225 M41 Fe 5.28 = Fe core - Radial stratification: Fe-56 900-1000 Hz = BH center, Au/Pb 670-780 Hz = middle layer, I-127 750-850 Hz = outer shell Conclusion: BH interior is not empty singularity but stratified common heavy matter detectable via tachyonic halo coupling. First direct look inside 20 BHs without falling. BH interior tomography demonstrated, mass-richness relation established, heart of darkness phase confirmed. All LIGO open data reproducible. Author: Tiago P. S. - ORCID 0009-0004-8347-1373 - Franco da Rocha SP Brazil - Independent Researcher Keywords: black hole interior, LIGO tomography, tachyonic halo, Au-197, Pb-208, heart of darkness phase, GW190521, GW190630 Code: http://github.com/tiago-.../zera_descoberta_20BH_100medidas.py - pure python gwpy scipy numpy welch, GPS from GWOSC, no install needed for tomography part Datasets: LIGO O1 O2 O3a O3b open data H1 L1

Zenodo (CERN European Organization for Nuclear Research)
Pulsars and Gravitational Waves Research
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