Solve Million-Variable Problems in Minutes, Not Months
The DSC-1 Daugherty Engine v3.0.0 uses simulated bifurcation — a classical method rooted in Hamiltonian mechanics where coupled oscillators evolve through adiabatic dynamics to find ground states of Ising spin systems. It outscales specialized quantum systems (D-Wave: 5,627 qubits) while running on commodity NVIDIA GPUs at $1.57/hour. Exposed via a REST API with PQC (Dilithium/ML-DSA) authentication, SHA3-256 hashing, and rate-limited tier access. All claims are blockchain-anchored on BSV with public verification tools and deployment certification.

Hamiltonian oscillator adiabatic dynamics evolve coupled oscillators through bifurcation points to find Ising ground states
No embedding overhead — every variable connects to every other variable
All benchmark results and deployment runs certified on BSV blockchain with public transaction IDs
Dilithium/ML-DSA cryptography with SHA3-256 hashing for API authentication
Open-source problem generators and solution validators for independent verification
28,160 Lehmer pair predictions with Monster Group moonshine peaks
Published research connected to this product.
Solves 1,000,000-variable optimization problems in under 40 minutes on commodity GPUs at $1.57/hr — outscaling D-Wave quantum hardware at a fraction of the cost. No specialized hardware required.