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EXPLORATION PHASE

HermetiQ

Quantum computing exploration at the edge of classical orchestration. Investigating how quantum simulation integrates with EVE-OS's local-first architecture — from circuit design to real-world hybrid workflows.

Azure Quantum provides access to quantum simulators that can model up to 50 qubits — enough to explore quantum algorithms, test circuit designs, and experiment with hybrid classical-quantum workflows. Beyond 50 qubits, you need hardware from vendors like Quantinuum, PASQAL, or Rigetti.

HermetiQ lives in that pre-stage — the playing-with-it stage. We're documenting how quantum simulation interacts with our orchestration layer, testing Q# scripts against real simulator backends, and exploring what quantum advantage looks like for local-first systems.

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Simulator Sandbox

Working within Azure Quantum's simulator tier — testing circuits, entanglement patterns, and quantum state management before committing to hardware QPU time.

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Orchestration Integration

Exploring how quantum subroutines plug into EVE-OS's existing workflow engine — hybrid classical-quantum pipelines with deterministic fallbacks.

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Q# Development

Writing and iterating on Q# scripts targeting multiple backends — from Quantinuum's H2 emulator to PASQAL's neutral-atom simulator.

Active Azure Quantum environment with simulator access

Quantinuum

H2 Emulator

✓ Available

PASQAL

Neutral Atom Sim

✓ Available

Rigetti

QVM Simulator

⚠ Degraded

Research notes, circuit experiments, and integration observations will be documented here as the exploration progresses.

LIVE SIMULATOR CONSOLE — 3-QUBIT REGISTER
q₀ (Phase Shift)
|ψ⟩ = 0.71|0⟩ + (0.71 + 0.00i)|1⟩
q₁ (Superposition)
|ψ⟩ = 1.00|0⟩ + 0.00|1⟩
q₂ (Entangled)
Bell State |Ψ⁺⟩