International Journal For Multidisciplinary Research
E-ISSN: 2582-2160
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Volume 8 Issue 5
September-October 2026
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Unified Space-Time Texture Theory: A Framework for Microscopic Spacetime Memory and Cosmological Dynamics
| Author(s) | Mr. Shourya Biswas |
|---|---|
| Country | India |
| Abstract | Connecting the microscopic geometry of quantum gravity to macroscopic cosmological observables remains one of the central challenges in theoretical physics. This paper introduces the Unified Space-Time Texture Theory (USTT), a speculative framework proposing that spacetime is not a smooth, passive manifold, but a viscoelastic topological solid endowed with geometric memory. Starting from a 10-dimensional master action containing a dedicated Texture Tensor, we compactify the theory on an orbifold. By tracking the dynamics of the resulting 27 localized topological defects through Donaldson’s numerical algorithm and effective field theory (EFT) reductions, we derive a non-linear Dirac-Born-Infeld (DBI) effective action. From this action, we compute testable cosmological predictions, including a modified quantum sound speed and a specific non-Gaussian signature targetable by next-generation cosmic microwave background (CMB) missions. We explicitly delineate the proven mathematics from the open foundational assumptions and state the remaining forward derivation challenges. |
| Keywords | Unified Space-Time Texture Theory, USTT, spacetime geometry, quantum gravity, topological defects, geometric memory, Donaldson algorithm, Calabi-Yau geometry, string theory, cosmology, DBI action, non-Gaussianity |
| Field | Mathematics > Maths + Physics |
| Published In | Volume 8, Issue 4, July-August 2026 |
| Published On | 2026-08-28 |
| DOI | https://doi.org/10.36948/ijfmr.2026.v08i04.86647 |
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E-ISSN 2582-2160
CrossRef DOI prefix of IJFMR is 10.36948/ijfmr
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