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January 18, 20260 citationsOpen Access

Geometric Stress Field: The Field Equation and Its Cosmological Implications

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UMUthraa Murali

Key Points

  • To propose the Geometric Stress Field (GSF) as a new framework that addresses cosmic acceleration without needing unseen matter.
  • Derivation of the gravitational field equation from a curvature-gradient action.
  • Analysis of how gradients of spacetime curvature affect cosmic acceleration.
  • Introduces dark energy as a geometric phenomenon instead of relying on missing matter or a cosmological constant.
  • Demonstrates that cosmic acceleration can emerge from the self-stress of the geometry of spacetime.

Abstract

This work introduces the Geometric Stress Field (GSF), a covariant extension of General Relativity in which gradients of spacetime curvature generate an intrinsic geometric stress. Rather than invoking unseen matter or a cosmological constant, the framework shows how cosmic acceleration can emerge from the self-stress of geometry itself. The central idea is simple but consequential: what has been interpreted as missing matter or energy may not be missing at all, but instead encoded in the way spacetime responds to non-uniform curvature. By deriving the full gravitational field equation from a curvature-gradient action, this work reframes dark energy as a geometric phenomenon rather than a material one. This submission marks the starting point of a shift in perspective — from searching for what is absent, to understanding what has been present in spacetime all along.

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Cite This Study

Uthraa Murali (2026) studied this question.

synapsesocial.com/papers/696c7877eb60fb80d1396acfhttps://doi.org/10.5281/zenodo.18265649
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