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May 18, 20260 citationsOpen Access

Emergent Time and Causal Orientation.

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ANAlexander Nett

Key Points

  • The aim is to develop a temporal framework based on structural articulation, challenging conventional notions of time.
  • Constructed a monotone structural counter of change linked to relaxation and thermodynamics.
  • Established links with microscopic reversibility and fluctuation theorems.
  • Formulated measurable time through macroscopic clock observables.
  • Derived thermodynamic orientation as a projection of structural monotonicity.
  • Achieved finite causal propagation at the structural substrate interface.
  • Connected the temporal framework to thermal time and covariant dynamics.

Abstract

This preprint develops the temporal sector of the Theory of Structural Articulation (TSA). It shows how time can be constructed from pregeometric relaxation rather than assumed as a primitive coordinate. The main achievements are: a monotone structural counter of change is constructed; this counter is connected to relaxation, diffusion and thermodynamic orientation; the thermodynamic arrow is derived as a projection of structural monotonicity; compatibility with microscopic reversibility and fluctuation theorems is established; measurable time is formulated through macroscopic clock observables; finite causal propagation is obtained at the interface between the structural substrate and emergent geometry; and the same temporal framework is connected to thermal time, covariant dynamics and the quantum Wasserstein–Madelung representation. The manuscript is self-contained at the level of the temporal construction and uses geometric, spectral and diffusion inputs from companion TSA works.

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Cite This Study

Alexander Nett (2026) studied this question.

synapsesocial.com/papers/6a0aad2a5ba8ef6d83b70b00https://doi.org/10.5281/zenodo.20122363
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