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May 15, 20260 citationsOpen Access

Faster-than-Light Phase Propagation, the Fate of a Cyclic Universe, and the Emergent Luminal Boundary in Extended Classical Mechanics

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STSoumendra Nath Thakur

Key Points

  • This work aims to unify cosmological concepts with Extended Classical Mechanics to explore superluminal phase propagation and the cyclic fate of the universe.
  • Developed a theoretical framework based on Extended Classical Mechanics (ECM) to analyze phase propagation and cosmic evolution.
  • Examined conditions under which superluminal phase propagation occurs, including gravitationally bound and anti-gravitational regimes.
  • Analyzed the implications of phase-frequency transformations for time emergence and cosmological cyclicity.
  • Superluminal phase propagation was shown to occur under specific conditions, allowing wavelengths below the Planck scale.
  • Projection of a cyclic universe model where cosmic evolution moves towards un-manifestation, rather than infinite expansion.
  • Established a relation between phase-frequency continuity and time distortion, providing an alternative perspective to classical interpretations.

Abstract

This work develops a unified cosmological and dynamical extension of Extended Classical Mechanics (ECM), demonstrating that the conventional speed of light (c) emerges not as an absolute universal limit, but as a stable manifestation boundary associated with the Planck-scale wavelength constraint (λ ≥ ℓᴘ) within the manifested physical regime. Within this framework, the luminal limit remains preserved under ordinary gravitationally bound conditions, where manifested matter mass dominates negative apparent mass. However, when the system transitions into a phase-dominated anti-gravitational regime, characterized by |Mᵃᵖᵖ| ≫ Mᴍ, the manifestation boundary weakens, permitting sub-Planckian wavelength contraction (λ c). This superluminality is interpreted not as a violation of known physics, but as a natural consequence of transition into an un-manifest phase regime where ordinary spacetime ceases to remain fundamental. The same formalism is shown to govern temporal emergence. Time is reinterpreted in ECM as an emergent consequence of phase-frequency transformation, distinguishing idealized clock time, event-driven cosmic time, and entropy-induced temporal distortion. This leads to a generalized concept of time distortion distinct from conventional relativistic time dilation. When extended cosmologically, ECM predicts a cyclic universe in which terminal cosmic evolution proceeds toward phase-dominated un-manifestation rather than thermal termination or infinite wavelength expansion. In this limit, the universe undergoes frequency-state reorganization, enabling re-manifestation and thereby providing a natural cyclic cosmology. This yields a structurally comparable but physically distinct alternative to Conformal Cyclic Cosmology (CCC), replacing conformal geometric continuity with phase-frequency continuity. ECM therefore provides a unified framework linking superluminal phase behavior, emergent time, and the cyclic fate of the universe within a single physical formalism.

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Cite This Study

Soumendra Nath Thakur (2026) studied this question.

synapsesocial.com/papers/6a06b8dfe7dec685947ab553https://doi.org/10.5281/zenodo.20149860
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Extended Classical Mechanics Unveils a Universe Existing in a Pre-Manifest 'Phase State': A Sub-Planckian, Frequency-Governed, Cyclic Cosmological Framework2026
  2. 2The ECM Master Phase Transition: Super-Luminal Origin Dynamics, Emergent Spacetime, and the Deterministic Evolution of Cosmic Expansion2026
  3. 3Phase-Indexed Frequency Manifestation in Extended Classical Mechanics: Emergence of Time, Energy, Mass, Gravity, and Velocity Stabilization2026
  4. 4A Phase-Geometric Framework with Fixed Planck Length, Mathematical Subdivided Coordinates, and Cyclic Cosmic Evolution: Extended Classical Mechanics2026
  5. 5Faster-than-Light Phase Propagation, The Fate of a Cyclic Universe, and the Emergent Luminal Boundary in Extended Classical Mechanics2026