Preprint. April 2026. This paper presents the Anthelion Crystal, a kinetic-symmetric architecture for deterministic data integrity based on simulated matter-antimatter annihilation. Each bit is modeled as an informational fermion with logical spin s=1/2, and symmetric matter-antimatter pairs are stored at specular positions in a Hilbert-curve space. Validation occurs by instantaneous XOR annihilation: any corruption is detected in a single CPU cycle. Validated on a Lenovo ThinkPad T480s (Intel Core i7-8550U, 16 GB RAM, Ubuntu 24.04, Rust 1.85), the system detects 100% of single-bit errors with 2.92× lower latency than CRC32, reduces latency variance by 28.7% in cache-resident regimes (F ≈ 1.97, p < 0.05), and consumes 4.6% less energy for 100M pairs processed. Latency is independent of CPU frequency (R² < 0.1 from 0.4 to 4.0 GHz), confirming the memory-bound, deterministic access pattern predicted by the Laminar Flow Principle. Includes the complete Rust source code, LaTeX source, experimental telemetry (CSV files from P1–P8), and the OLLIN Custody License v1.1.
Luis Ernesto Berzunza Diaz (Fri,) studied this question.