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March 15, 20260 citationsOpen Access

Empirical Proof of Zero-Payload Topological Communication: Focusing on Native Engine Architecture and the J.M. Resonance Theorem

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MJMin Ho Jung

Key Points

  • To demonstrate a zero-payload topological communication architecture that transcends traditional bandwidth limitations.
  • Developed a fourth-generation stateless architecture
  • Utilized live forensic logs from HSKG Core Daemon
  • Implemented 12-core parallel computation for data processing
  • Achieved 63.9MB of high-definition video data transmission in 82.36ms
  • Demonstrated absolute zero-payload (ZERO_PAYLOAD) transmission
  • Finalized an architecturally zero-storage framework with RAM pointers vaporizing to 0x00.

Abstract

Traditional communication networks are strictly bound by Claude E. Shannon's channel capacity theorem, necessitating physical bandwidth expansions proportional to the size of data transmissions. This paper dismantles this "Delivery"-centric axiom and empirically demonstrates a fourth-generation stateless topological communication architecture that "Computes" data within independent edge devices. Supported by live forensic logs from the HSKG Core Daemon (Rust v4. 3. 1), we formally articulate the "Axiom Manifold", a 169MB latent mathematical base space devoid of original data, alongside the engine's sealed core constant: the "J. M. Spatiotemporal Resonance Theorem". With a sub-kilobyte coordinate, our architecture materializes 63. 9MB of high-definition video data in 82. 36ms via 12-core parallel computation, achieving a mathematically absolute zero-payload (ZEROPAYLOAD) transmission. Upon completion, RAM pointers evaporate to 0x00 (Vaporization), finalizing an architecturally zero-storage framework impervious to even quantum forensic reconstruction.

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Cite This Study

Min Ho Jung (2026) studied this question.

synapsesocial.com/papers/69b5ff8083145bc643d1c0edhttps://doi.org/10.5281/zenodo.19000175
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