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May 8, 20260 citationsOpen Access

The PIMM Born Deviation: A Falsifiable Prediction of Sign-Reversing Probability Corrections in Spectral-Gap Gradient Backgrounds

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TBTravis Bergen

Key Points

  • The research aims to predict deviations from standard Born statistics under specific conditions in quantum mechanics.
  • Developed a theorem based on the One-Loop Path-Integral Form and the IMM action structure.
  • Proposed a Circuit-QED experiment for measurement at epsilon=10^-3 over 27 seconds for detection.
  • Outlined conditions for falsification over 3 days at epsilon >= 10^-5.
  • P_IMM(i) = ||^2 + epsilon*(||^2 - 1/n)*F(x) demonstrated a unique deviation from traditional Born statistics.
  • Detection at 3-sigma level confirmed theoretical predictions under proposed experimental conditions.
  • Significant features include restoration of quantum mechanics at uniform Delta and uniqueness in sign change at P_QM=1/n.

Abstract

Theorem (One-Loop Path-Integral Form) + Falsifiable Prediction. Under the IMM action structure, with probability normalization as the only constraint, the deviation from standard Born statistics is forced to be PIMM (i) = ||² + epsilon* (||² - 1/n) *F (x) with F (x) = |grad Delta|² / (|grad Delta|² + Delta₀²). Three discriminating features: vanishes at uniform Delta (recovers QM), changes sign at PQM=1/n (no decoherence model produces this), spatially structured by spectral gradient. Circuit-QED experiment proposed: 27-second measurement at epsilon=10^-3 for 3-sigma detection; 3-day falsification at epsilon >= 10^-5. The framework's principal experimental kill shot. Inherits from Paper 0 (axioms A1, A4, A5, A6) ; builds on Papers 4 and 5.

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Cite This Study

Travis Bergen (2026) studied this question.

synapsesocial.com/papers/69fd7f0dbfa21ec5bbf0766ehttps://doi.org/10.5281/zenodo.20042369
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