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March 28, 20260 citationsOpen Access

Entropy as Wave: The Second Law as a Local Gradient of Periodic Constraint Structure

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FSFranny Philos Sophia

Key Points

  • To explore the nature of entropy increase and its implications within a larger periodic structure.
  • Survey of five independent cosmological models
  • Analysis of observational data on cosmic entropy production
  • Examination of the van der Pol oscillator as a model for entropy dynamics
  • Comparison of periodic trajectories and monotonic entropy increases
  • Evaluation of implications for dark energy and cosmic microwave background (CMB) signatures.
  • Entropy increase is shown to be local and bounded rather than global and monotonic.
  • Observational data suggests a preference for an asymmetric relaxation-oscillation waveform.
  • The proposed van der Pol oscillator offers a formal candidate for modeling entropy behavior.
  • Convergence of different models indicates a shared foundation for understanding entropy dynamics.
  • New predictions are generated regarding entropy deceleration profiles.

Abstract

The second law of thermodynamics is confirmed in every experiment ever conducted, yet itsempirical basis spans less than 0.000002% of cosmic history. All extrapolation beyond thedirect observation window rests on retrodiction from present-day constraint patterns,mediated by the Past Hypothesis—an inference from the current entropy gradient, not anindependent observation. We show that this inference is formally underdetermined: amonotonic trajectory and the ascending phase of a periodic trajectory are observationallyindistinguishable within the available window. We survey five independent researchprograms—Penrose’s conformal cyclic cosmology, Barbour’s Janus Point, the Carroll-Chenand Boyle-Turok symmetric cosmologies, Price’s defense of time-symmetric boundaryconditions, and the Page curve in black hole physics—that have each demonstrated, throughdifferent methods and in response to different problems, that entropy increase is local,emergent, and bounded rather than global, fundamental, and monotonic. Their convergenceconstitutes the evidential basis for the wave hypothesis: that entropy increase is the ascendinglocal gradient of a larger periodic constraint structure. Observational data on cosmic entropyproduction—peaking at redshift z ≈ 2 and decelerating since—favor an asymmetricrelaxation-oscillation waveform over a simple sinusoid. We propose the van der Pol oscillatorin the strongly nonlinear regime as a formal candidate and show that Adlam’s framework oflaws as atemporal constraints provides the philosophical infrastructure for periodic entropy.The hypothesis generates testable predictions concerning entropy deceleration profiles,time-varying dark energy, and CMB signatures.

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Cite This Study

Franny Philos Sophia (2026) studied this question.

synapsesocial.com/papers/69c771508bbfbc51511e1283https://doi.org/10.5281/zenodo.19237573
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