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May 22, 20260 citationsOpen Access

The Damaru Spacetime Topology: Modeling Quantum Entanglement and Microtubule Information Transmission in Higher-Dimensional Consciousness

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GPGautam Pal

Key Points

  • This research aims to establish a geometric framework that explains non-local information transfer in quantum and biological systems.
  • Introduced the Damaru Structure (Hourglass Singularity Model) as a geometric framework.
  • Evaluated the Damaru as an absolute zero-frequency singularity to model information transmission.
  • Mapped the proposed architecture onto microtubular networks in the human brain.
  • Demonstrated a structural pathway for instantaneous data telemetry under quantum conditions.
  • Mapped the geometric framework effectively onto human brain microtubules, proposing connections to Quantum Neuroscience.
  • Presented the Damaru as a potential framework for understanding multidimensional consciousness.

Abstract

This paper introduces a geometric and topological framework, the Damaru Structure (Hourglass Singularity Model), to resolve the mechanism of non-local information transfer in quantum systems and biological neural networks. By evaluating the central bottleneck of the Damaru as an absolute zero-frequency singularity (f=0, A-Spandana), we present a structural pathway for instantaneous data telemetry (Vm -> infinity) that satisfies the physical conditions of Quantum Entanglement. Furthermore, we map this macro-cosmic architecture onto the micro-tubular networks of the human brain, offering a geometric blueprint for Quantum Neuroscience and multidimensional Consciousness Modeling.

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Cite This Study

Gautam Pal (2026) studied this question.

synapsesocial.com/papers/6a0ff42fd674f7c03778d60chttps://doi.org/10.5281/zenodo.20303823
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