Abstract
THE QUANTUM-CLOUD INTERCEPT INTERFACE
With commercial processors achieving random-circuit sampling advantage via multi-coupler arrays, a severe systemic security vulnerability emerges: Centralized Infiltration of the Telemetry Pipeline. When an open edge network queries a centralized quantum cloud foundry, the returning computational state is highly susceptible to man-in-the-middle phase manipulation, tracking payloads, or deliberate institutional censorship.
SPEC-171 establishes the Decentralized Quantum-Resistant Attestation Mesh (DQ-RAM). Operating natively inside the physical 64-pin BGA Secure Enclave (SPEC-169), DQ-RAM treats incoming high-connectivity cloud metrics not as trustworthy software text, but as a continuous, unverified phase manifold that must pass through a local, hardware-enforced matrix mask before state relaxation.
Creative Commons License

This work is licensed under a Creative Commons Attribution 4.0 License.
Recommended Citation
Eckes, Christopher L., "THE DECENTRALIZED QUANTUM-RESISTANT ATTESTATION MESH (DQ-RAM) FOR EDGE-ENCLAVE METRIC COUPLING IN HIGH-CONNECTIVITY SUBSTRATES", Technical Disclosure Commons, (October 01, 2026)
https://www.tdcommons.org/dpubs_series/11940