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Synapse
February 22, 20260 citationsOpen Access

Empirical Verification of a Stateless Architecture for Multi-Dimensional Physics, AI, and Quantum-Resistant Digital Sovereignty: A Unified Approach via J.M Function and Spatiotemporal Bio-Convergence

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MJMin Ho Jung

Key Points

  • The aim is to verify a stateless architecture that addresses challenges in AI operations and data sovereignty.
  • Introduced the J.M Function for key generation.
  • Utilized spatiotemporal and biometric data for key processes.
  • Conducted empirical tests on data vaporization and regeneration.
  • Achieved data operation with less than 25MB memory instead of 819.2 GB VRAM.
  • Reduced data storage requirements to 0 Bytes effectively.
  • Proven feasibility of a low-energy digital sovereignty platform consuming only 0.0030W.

Abstract

This study proposes a 'Stateless Architecture' to solve the challenges of hyper-scale Artificial Intelligence (AI) operations, high-dimensional dynamics control, and data sovereignty in the quantum computing era. Through the patent-pending J.M Function and spatiotemporal and biometric-based stateless key generation technology, data is vaporized into mathematical coordinates rather than stored as physical bits. This breakthrough allows models requiring 819.2 GB VRAM to operate with less than 25MB of memory, effectively reducing data storage space to 0 Bytes. By demonstrating the complete vaporization and regeneration of data via context-aware key recreation, we empirically prove the feasibility of an eco-neutral digital sovereignty platform consuming only 0.0030W of energy.

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Cite This Study

Min Ho Jung (2026) studied this question.

synapsesocial.com/papers/699a9e20482488d673cd4a3dhttps://doi.org/10.5281/zenodo.18717635
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