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@Cosmochrony

Cosmochrony

A Pre-geometric Framework for Emergent Spacetime, Dynamics, and Matter

Cosmochrony is a pre-geometric relational framework in which time ordering, spacetime geometry, gravitation, gauge structure, and matter emerge from the irreversible relaxation of a single relational substrate, denoted $\chi$.

No fundamental spacetime, metric tensor, gauge field, or quantization postulate is introduced at the ontological level. All familiar physical structures arise as regime-dependent effective descriptions, obtained through a generally non-injective projection $\Pi : \chi \longrightarrow \chi_{\mathrm{eff}}$.

Foundational structure

Emergent time

Physical time corresponds to the intrinsic, directed ordering of $\chi$ relaxation. It is not a background parameter but a derived operational ordering.

Non-injective projection

Observable states correspond to equivalence classes of underlying $\chi$ configurations. This structural non-injectivity accounts for:

  • quantum indeterminacy,
  • contextuality,
  • Bell inequality violations, without invoking fundamental stochasticity or nonlocal signals.

Bounded relaxation and effective dynamics

A universal bound on relaxation flux ($|\partial_t \chi| \le c_\chi$) leads uniquely to a Born–Infeld-type effective action. This provides:

  • non-singular strong-field behavior,
  • causal saturation,
  • a unified treatment of high-energy and low-density regimes.

Emergent sectors

Gravitation

Gravity arises from sustained inhibition of relaxation ordering. In the projectable regime, this is encoded geometrically and reproduces:

  • Schwarzschild solution,
  • weak-field phenomenology,
  • gravitational redshift and Shapiro delay.

Gauge structure and charge

Gauge symmetry is identified with the connection associated to the projection fiber. Electric charge appears as a structural invariant of relaxation flux orientation, rather than as a fundamental gauge field postulate.

Mass and inertia

Mass corresponds to localized spectral stability under relaxation. Inertia arises from resistance to reconfiguration of stable χ-structures.

Quantum electrodynamics (precision regime)

The Lamb shift and the Schwinger effect are interpreted as consequences of:

  • finite spectral resolution,
  • bounded flux saturation, without introducing a physically populated vacuum.

Cosmology

Cosmic expansion and low-density dynamics follow from bounded relaxation. The framework provides:

  • a unified effective mechanism for flat galactic rotation curves,
  • a structural explanation of the Hubble tension, without invoking dark matter particles or fundamental dark energy.

Superconductivity

Superconducting coherence is interpreted as projective phase locking under constrained relaxation, providing a unified description of conventional and strongly correlated regimes.

Research components

This organization hosts:

Status

Cosmochrony is an active foundational research program with derived effective dynamics and quantitative, regime-dependent, falsifiable predictions.

Preprints are publicly available via Zenodo. Journal submissions are ongoing.

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    Cosmochrony: A Structurally Constrained Pre-Geometric Framework for Emergent Physics

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