Published February 12, 2026 | Version 1
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FRC 808.201 - Emergent Force Laws in Scalar Coherence Fields: A Thermodynamic Derivation

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Recent proposals for a scalar coherence field (Λ) governing quantum state evolution [Servat, FRC 100.007] suggest that coherence is a physically conserved quantity conjugate to entropy. This paper explores the dynamical consequences of this framework for macroscopic bodies. By applying the entropic force formalism (F = T∇S) to the entropy-coherence reciprocity relation defined in FRC 100.001, we derive an emergent force term proportional to the gradient of the Λ-field. We demonstrate that in regions of high coherence density, this force acts attractively, mimicking gravitational dynamics. This derivation suggests that the anomalous rotation curves of galaxies (typically attributed to Dark Matter) may instead be described as fluid-dynamic effects of vacuum coherence gradients. We propose a laboratory experiment using high-finesse optical cavities to detect this coherence-induced force at mesoscopic scales.

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Related works

Is supplement to
Preprint: 10.5281/zenodo.15079820 (DOI)
Preprint: 10.5281/zenodo.17968952 (DOI)

References

  • Servat, H. (2025). Fractal Resonance Collapse: Guided Wavefunction Collapse via Resonant Attractors. FRC 100.003. DOI: 10.5281/zenodo.15079820
  • Servat, H. (2025). The Lambda-Field: Scalar Completion of Coherence Dynamics. FRC 100.007. DOI: 10.5281/zenodo.17968952
  • Servat, H. (2025). Entropy-Coherence Reciprocity. FRC 566.001.
  • Verlinde, E. (2011). On the Origin of Gravity and the Laws of Newton. JHEP 1104:029. DOI: 10.1007/JHEP04(2011)029