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Computational study of Environment-Assisted Quantum Transport (ENAQT) in open quantum chains. Validated against 1,000 exact HEOM trajectories; enhancement scales as ~2.1N with chain length; structural disorder amplifies rather than destroys ENAQT — universal in 95–100% of random configurations.
A numerical investigation (free-fermion / small exact-diagonalization) of emergent geometry from entanglement (the Van Raamsdonk / Cao–Carroll–Michalakis program), probed by a single quantity: the non-Euclidean obstruction of the mutual-information distance, ε_geo. The aim is to delimit precisely what this diagnostic can and cannot tell us.
Falsification-first validation harness for finite-lattice spectral toy geometries. Current case study: S³×S¹ Anderson localization (N ≤ 896). Computational validation only — no physics claims.