Ex4pmEngine.QuantumProcess (ex4pm v26.9.9)

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Vision 2040 Quantum Superpositional Petri Net Engine.

FORMALISM CLASSIFICATION (per adversarial review): This module implements a Continuous-Time Stochastic Branching Simulation over normalized real-valued amplitude vectors — a structural analogue to quantum superposition for multi-path concurrent process exploration. It is NOT a true quantum circuit and does NOT execute on a quantum processing unit (QPU). A full quantum implementation would require complex-valued density matrices rho = sum_i p_i |psi_i><psi_i|, non-separable tensor product states for multi-object entanglement, and Lindblad master equation decoherence modeling. This module is a 2040-horizon architectural prototype and specification.

Represents process state as a normalized real-valued amplitude vector analogous to a projected Hilbert space marking state: |M⟩ = sum_k alpha_k |k⟩ in C^|P| where sum |alpha_k|^2 = 1.0

Features:

  • Superpositional concurrent branching over speculative paths.
  • Unitary transition evolution operator U_t = exp(-i H_t dt).
  • Measurement collapse operator Pi_sink that collapses superposition to a deterministic 1-safe sound terminal marking upon cryptographic consensus.

Summary

Functions

Evolves the quantum process state across multiple branch paths via unitary transformation.

Measures and collapses the quantum superposition to a definite 1-safe sound terminal marking.

Initializes a quantum superpositional marking state vector.

Functions

evolve_superposition(qstate, branches)

Evolves the quantum process state across multiple branch paths via unitary transformation.

measure_collapse(qstate, sink_place)

Measures and collapses the quantum superposition to a definite 1-safe sound terminal marking.

new(places)

Initializes a quantum superpositional marking state vector.