Abstract:The security of traditional asymmetric cryptography (e.g., ECC, RSA) relies strictly on the computational complexity of mathematical dilemmas such as discrete logarithms and prime factorization. Confronting the generational disruption of quantum computing power, these rigid mathematical structures face catastrophic risks of exponential collapse. Modern iterations ranging from smart-contract platforms to blind transaction protocols fail to address this vulnerability, remaining fundamentally derivative software modifications to Nakamoto's baseline architecture. This paper proposes a definitive paradigm shift, introducing the Thing-to-Thing (T2T) Holographic Distributed Architecture Solution. By devolving anti-tamper algorithms from the informational dimension down to the physical irreversibility of thermodynamics and semiconductor physics, we construct a hardware-native consensus architecture. Utilizing Silicon Physical Unclonable Functions (SRAM PUF) to generate true physical entropy, and locking historical ledger states via nanometer phase-change programmable fuses (eFUSE), this framework realizes a definitive manifestation of Shannon’s Perfect Secrecy operating within a 406-dimensional optimal phase space. Crucially, the architecture resolves the existential paradox of decentralized networks facing state-level regulatory and capital centralization. By enforcing a macro-capital staking matrix where baseline investments significantly exceed block minting rewards, the protocol establishes a hyper-asymmetric game equilibrium. Large institutional cartels are bound to the network's survival by an absolute thermodynamic dependency; any Byzantine deviation instantly triggers an Asymptotic Damped Slashing vector over a 10,000-block retrospective sliding window. Furthermore, this framework achieves absolute strategic deterrence against jurisdictional coercion through a hardware-native Jurisdictional Circuit Breaker (JCB). Any state-compelled ledger modification or physical infrastructure seizure triggers localized chip-level self-destruction and automated liquidity vaporization rather than ledger corruption, achieving an enduring, sovereign-immune, and material-native trust manifold.
shaoren li (Fri,) studied this question.