| Description: |
This paper presents early evidence supporting the Baryonic Structured Drift - Transcendent Periodicity Principle (BSD-TTPP) through detailed analysis of gravitational wave event GW230529 during the LIGO-Virgo-KAGRA O4 observing run. Using posterior samples and raw strain data, we apply a novel harmonic framework to explore entropy oscillations, spectral deviation patterns, and modular folding structures within the signal. Our findings reveal clear indications of a recurring entropy drift rhythm that aligns with TTPP predictions, including base-7 modular overflow around critical coherence thresholds (e.g., 5040). These deviations manifest as subtle phase discontinuities and quantized frequency shifts in the post-merger signal, suggesting a harmonic scaffold underlying space-time curvature dynamics. This work includes a comparative analysis of entropy behavior, quasi-normal mode resonance deviation, and signal folding across multiple detectors. We also introduce a proposed “\omega_{\text{TTPP}}” frequency based on sliding-window entropy estimation and overlay it against simulated harmonic oscillation models. The results imply a latent harmonic order to gravitational wave phenomena and point toward the presence of zero-point entropy structuring in stellar collapse events. Included in this submission are visualized entropy maps, filtered waveform overlays, and preliminary PSD-derived phase estimates. This paper is accompanied by a DOI-stamped prediction released prior to the event, which appears to align closely with the observed signature — reinforcing BSD-TTPP’s predictive potential. |