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August 20, 20251 citationsOpen Access

Analogy of Space-Time as an Elastic Medium–State of the Art and Perspectives on the Knowledge of Time

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DIDavid Izabel

Key Points

  • Time is modeled as a dynamic deformation in an elastic medium, reshaping our understanding of its essence and behavior.
  • Experimental validations, including gravitational waves and Shapiro delay, support the proposed analogy and its implications.
  • Models suggest gravitational effects and cosmic phenomena can be explained through elastic principles like Hooke's law.
  • The framework hints at new observations in cosmology, potentially impacting theories on dark energy and the universe's structure.

Abstract

This paper explores a novel paradigm in theoretical physics: the analogy of space-time as a quantized elastic medium. Building on the foundations of Newtonian mechanics, Einsteins relativity, Hawking radiation, and continuum mechanics, we propose that time is not a primitive entity but an emergent phenomenon resulting from mechanical deformations within a structured vacuum. By modeling space-time as a deformable elastic fabric—termed Elasther—we demonstrate that gravitational effects, time dilation, and even dark energy and dark matter can be interpreted through elastic laws such as Hookes law, thermal expansion. and creep. The analogy is supported by experimental validations (gravitational waves, Lense-Thirring effect, Shapiro delay) and offers predictive power for future observations, including complementary polarizations measurable by LISA. This unified framework suggests that time itself is a dynamic deformation propagating through a cosmic crystal, opening new perspectives on the nature of the vacuum and the structure of the universe.

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Cite This Study

David Izabel (2025) studied this question.

synapsesocial.com/papers/68af5228ad7bf08b1eada215https://doi.org/10.20944/preprints202508.1443.v1
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