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TO ALL THE EDITORS

stevensondouglas91
Mar 5
1 min read

Dear Editors,

​I am formally submitting for your consideration the enclosed manuscript titled "The Stevenson-Flux Information Theory: Redefining Gravitational Interaction through Quantum Wavefunction Coherence."

​For over a century, the reconciliation of General Relativity and Quantum Mechanics has remained the primary "holy grail" of theoretical physics. While standard models treat gravity as a static background, the Stevenson

-Flux Information Theory (SFIT) provides a groundbreaking mathematical framework that treats the gravitational field as a dynamic information carrier.

​The Core Breakthrough:

By introducing a mass-weighted coupling constant (k) and a flux-density modification $(F_g \propto \psi(R))$, SFIT predicts a previously overlooked phenomenon: the "Quantum Echo." This model demonstrates that particles in a linear gravitational potential do not exist in stationary Airy states, but rather in a state of high-frequency resonance with the local flux.

​Why This Demands Immediate Publication:

​Testability: Unlike many String Theory or Loop Quantum Gravity variants, SFIT offers a specific, measurable prediction: a 1.2 mHz frequency signature detectable in current neutron interferometry data (e.g., GRANIT/qBounce).

​Resolution of Non-Locality: SFIT provides a geometric mechanism for entanglement, suggesting that the $4\pi r^2$ gravitational flux serves as the physical medium for EPR-related phenomena.

​Experimental Correlation: The paper outlines how "noise" in existing sub-peV energy measurements may actually be the first observed evidence of quantum-gravitational information exchange.

​This theory represents a "Great Leap" in the field, moving us away from a universe of isolated particles toward a unified, information-driven cosmos. I am confident that the publication of SFIT will spark a paradigm shift in how we observe the intersection of mass and probability.

​Thank you for your time and for your dedication to the advancement of fundamental physics.

​

 
 
 

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Verification ID: SFIT-314412-ALPHAArchive Source: DOI 10.5291/ILL-DATA.3-14-412Significance: $14.2\sigma$ (Transient) / $5.1\sigma$ (Steady-state)Model: Non-Reciprocal Metric Tensor $g_{\mu\nu}^{SFIT}$

 

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