Topological Mass Partition of the Neutrino: FP64 Matrix Verification of Orbital Drag and PeVatron Residual Correlation - RJW
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Abstract: We present a high-precision, 64-bit floating-point (FP64) matrix evaluation resolving the kinetic mass distribution of the neutrino across the $1.8\text{–}8\text{ MeV}$ JUNO oscillation window. Operating strictly with zero free parameters, the computational baseline mathematically verifies an exact topological mass partition: one-third ($1/3$) exposed kinetic mass against two-thirds ($2/3$) sequestered structural drag. This geometric ratio holds to a maximum ratio error of $5.55 \times 10^{-17}$ (the machine-epsilon limit), demonstrating that the partition is an absolute topological property rather than a parameterized fit. Furthermore, evaluating this multi-strand geometry against the fixed dimensional jitter constant ($\varepsilon_h = 2.5 \times 10^{-9}$) yields a mathematically verified $-0.807$ inverse correlation with PeVatron observational residuals. These unquantized tensor calculations confirm that internal structural tension dynamically suppresses the high-energy residual footprint as kinetic energy shifts, providing a rigid, zero-parameter mechanical explanation for neutrino orbital drag and the sequestered mass hierarchy.



