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April 21, 20260 citationsOpen Access

The Deterministic Collapse of Non-Backed Digital Assets: A Topological Autopsy of Decentralized Consensus and Liquidity Vacuum

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DWDa Wei

Key Points

  • To explore the computational and topological mechanisms that lead to the collapse of non-backed digital assets.
  • Analyzed the computational complexity of decentralized financial networks.
  • Utilized P1→3 ternary manifold mappings to address the elliptic curve discrete logarithm problem.
  • Mathematically proved the effects of loss of foundational energy on digital asset systems.
  • Demonstrated that without a fundamental support, digital asset systems experience deterministic entropy maximization.
  • Provided evidence of irreversible liquidity collapse in both spot and derivative markets.

Abstract

This paper eschews market sentiment analysis and regulatory perspectives, focusing ex-clusively on the computational complexity and topological physics underlying decentralizedfinancialnetworks. Buildinguponthe polynomial-time collapseoftheEllipticCurveDiscreteLogarithm Problem (ECDLP) via P1→3 ternary manifold mappings, we demonstrate thatthe non-polynomial barrier of asymmetric cryptography is a localized topological illusion.Furthermore, we mathematically prove that upon the breach of this barrier, digital assetsystems lacking a foundational energy anchor (gravitational compensation or macroscopiccredit bandwidth) undergo deterministic entropy maximization. This dynamic results in anirreversible, physical-layer liquidity collapse across both spot and derivative markets.

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Cite This Study

Da Wei (2026) studied this question.

synapsesocial.com/papers/69e7143fcb99343efc98dabbhttps://doi.org/10.5281/zenodo.19653081
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