Connection to CPT violation
FTFT’s quantized time structure, embodied by φT, naturally predicts CPT violation through its oscillatory dynamics, non-local kernel, and modified interactions. The predicted asymmetries in high-energy collisions ( Δtℓℓ≈1.5fs), neutrino oscillations, and CMB anomalies ( ΔCℓ/Cℓ≈10−3) are mathematically consistent with the FTFT Lagrangian and testable by CMS, DUNE, Belle II, and the Simons Observatory. As of August 2, 2025, no data confirms these predictions, but upcoming experiments (2026–2030s) offer a clear path for validation. If verified, FTFT’s CPT-violating signatures could revolutionize our understanding of fundamental symmetries, positioning time as a central dynamical entity in physics.
Non-Local Temporal Couplings
The non-local and SUSY extensions of FTFT provide:
• Testable attoscale signatures via λNL modifications
• Distinctive SSDL events at HL-LHC from ϕT -slepton coupling
• UV completion via Heterotic String Theory
Fonooni Temporal Field Theory (FTFT) Core Concepts
Fonooni Temporal Field Theory ,FTFT’s key predictions, linking theoretical extensions (non-local and SUSY) to experimental tests at CMS, LIGO, and Belle II. They enhance the manuscript’s clarity for reviewers and readers.
Fonooni Temporal Field Theory (FTFT) Core Concepts
Fonooni Temporal Field Theory ,FTFT’s key predictions, linking theoretical extensions (non-local and SUSY) to experimental tests at CMS, LIGO, and Belle II. They enhance the manuscript’s clarity for reviewers and readers.
Copyright © 2025 FTFT - All Rights Reserve
FTFT has made significant progress in advancing our understanding of quantum gravity and black hole physics. The results show that FTFT provides valuable corrections to the entropy of black holes, modifies gravitational wave signals, and predicts small but measurable deviations in black hole shadow sizes. The theory is consistent with string theory in many aspects, while offering a distinct framework for quantum gravity that could be tested with future observational data. The refinement of FTFT parameters, coupled with comparisons to LQG and string theory, suggests that FTFT could play an important role in future unification efforts for quantum gravity theories ed.
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