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May 26, 20260 citationsOpen Access

Dynamical Relaxation States in SPARC Galaxies from an Effective Viscoelastic Framework

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KCKim Chang-Sik

Key Points

  • The aim is to understand the residual structure of the radial acceleration relation in galaxies and its relation to dynamical relaxation states.
  • Analyzed the SPARC sample of 175 galaxies using an effective viscoelastic model.
  • Inferred an effective relaxation parameter and correlated it with galaxy kinematics and morphology.
  • Statistical analyses identified significant correlations between relaxation states and various dynamical indicators.
  • Significant correlations found between inferred relaxation states and maximum rotation velocity (p<0.01).
  • Identified links between relaxation states and effective dynamical indicators (p<0.05).
  • Supported the idea that RAR scatter reflects non-equilibrium collective response behaviors in galaxy dynamics.

Abstract

This work investigates the residual structure of the Radial Acceleration Relation (RAR) in galaxies using the SPARC sample within the framework of an Effective Viscoelastic Model (EVM). Rather than interpreting the RAR scatter as purely stochastic noise, this study explores the possibility that residual structures encode physically meaningful information about galaxy dynamical relaxation states. Using 175 SPARC galaxies, an emergent effective relaxation parameter is inferred and statistically analyzed against galaxy kinematics and morphology. Statistically significant correlations are identified between the inferred relaxation states and maximum rotation velocity, effective dynamical indicators, and broad morphological classes. The results suggest that galaxy-scale gravitational phenomenology may exhibit non-equilibrium collective response behavior, where the observed RAR scatter reflects incomplete or scale-dependent dynamical relaxation processes. This work presents a phenomenological exploration of galaxy relaxation-state structures and provides a possible dynamical interpretation of RAR residuals within an effective delayed-response gravitational framework.

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Cite This Study

Kim Chang-Sik (2026) studied this question.

synapsesocial.com/papers/6a153b00b5d9c58d83e8d376https://doi.org/10.5281/zenodo.20367217
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Also Consider

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

  1. 1Emergent Relaxation States of SPARC Galaxies\\ in an Effective Viscoelastic Framework2026
  2. 2The Physical Meaning of β : An Emergent Relaxation-State Variable in SPARC Galaxies2026
  3. 3ESSC v6.5 — Residual Structure in the Radial Acceleration Relation and a Radial Transition Band in Disk Galaxies2026
  4. 4An Effective Relaxation Model for Galactic Dynamics: Rotation Curves and the Radial Acceleration Relation2026
  5. 5ESSC v6.4 — Residual Structure of the Radial Acceleration Relation and a Geometric Transition Band2026