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April 25, 20260 citationsOpen Access

Covariant q-Deformed Topological Field Theory on M3: Emergent Temporality and Galactic Kinematic Predictions

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DWDa Wei

Key Points

  • The aim is to establish a covariant q-deformed effective field theory that reveals emergent time and their implications for galactic kinematics.
  • Developed a covariant q-deformed effective field theory embedded in a ternary topological manifold (M3).
  • Introduced dissipative coupling to treat localized astrophysical systems as open subsystems.
  • Evaluated kinematic limits to predict rotation curves and energy density profiles.
  • The theory predicts a flat velocity regime at intermediate radii followed by a transition to Keplerian decline at larger radii.
  • The effective energy density profile is modified by flux attenuation mechanisms, providing potential dark matter alternatives.
  • Analytical evaluations show concordance with known astrophysical observations.

Abstract

Wepresentacovariantq-deformedeffectivefieldtheory(EFT)embeddedwithinaternarytopological manifold (M3). In this framework, macroscopic time emerges as a thermody-namic projection associated with information flux under topological impedance. Treatinglocalized astrophysical systems as open subsystems, we introduce an effective dissipativecoupling representing coarse-grained interactions with background degrees of freedom. Thismechanism yields a natural flux attenuation that modifies the effective energy density profile.Analytical evaluation of the kinematic limits shows that the resulting rotation curves inher-ently reproduce a flat velocity regime at intermediate radii and a smooth transition towardKeplerian decline at large radii. The model provides a robust phenomenological frameworkcomparable to dark matter descriptions while offering a fundamentally distinct microphysicalinterpretation.

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Cite This Study

Da Wei (2026) studied this question.

synapsesocial.com/papers/69ec5ae988ba6daa22dac7dbhttps://doi.org/10.5281/zenodo.19707301
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