Quantum control Landing

Quantum Studio

Kuramoto-XY quantum compiler with an executive studio: nine runnable verbs, sealed records, and reproduction scripts.

Quantum simulation of coupled-oscillator synchronisation on IBM Heron r2 (156 qubits). Rust-accelerated (5401×). 20/20 hardware experiments. CHSH S=2.165. First heterogeneous Kuramoto-XY on quantum hardware.

  • Executive spine with all nine federation verbs (compile, simulate, analyse, validate, benchmark, replay, differentiate, mitigate, approval-gated execute) runnable via scpn-studio-run; every action seals a digest-bound record and a reproduction script.
  • Committed hardware evidence: five ibm_kingston (Heron r2) result packs, sixteen raw artefacts, re-verifiable byte-for-byte (SHA-256 digests and provider job identifiers) through the replay verb.
  • Bit-exact XY compile unit whose input digest recomputes in a browser through a WASM kernel — verification without trusting the studio.
  • Bounded differentiable-programming surface with a claim ledger and a reference-validation registry; the validate verb re-checks both on demand.
  • Honest-scope policy: hardware status ledger separates theory, simulator, unmitigated and mitigated claims; benchmark records always carry production_claim_allowed: false with their timing caveat.
At a glance

Live from the source repository

Reflected from the project's public GitHub repository at build time — never hand-copied.

Latest release studio-remote-v0.10.2 10 Jul 2026
Last activity 10 Jul 2026 most recent push
Primary language Python
On PyPI 0.10.0 scpn-quantum-control
Stars 2
coupled-oscillatorsfusion-energyibm-quantumkuramotonisqphysics-simulationplasma-controlplasma-physicspyo3pythonqiskitquantum-circuitquantum-computingquantum-controlquantum-physicsquantum-simulationrustspiking-neural-networkstokamakvqe
Live evidence bundle

Verified in your browser

This RO-Crate is fetched client-side, unpacked, and checked against the evidence contract — the server cannot silently change the boundary.

Case studies

How this studio is used

Evidence-backed stories that show the studio in practice, with linked evidence bundles and publications.

Publications

Related publications

Peer-reviewed and whitepaper outputs that cite this studio's evidence bundles.

Documentation

Read the full docs

scpn-quantum-control compiles arbitrary bounded Kuramoto oscillator networks into XY/XXZ spin Hamiltonians and circuits, evolves them on simulators, analyses synchronisation with persistent-homology witnesses, and ledgers every hardware claim against committed raw-count evidence. The executive studio runs all nine federation verbs from one CLI — each action seals an auditable record with a content digest and writes a standalone reproduction script; live-QPU deployment is approval-gated and fails closed. At today's reachable sizes classical solvers outperform the quantum routes; the claim ledger says exactly what is and is not demonstrated.

The full documentation is maintained in the project's own repository and rendered on its GitHub Pages — this page links to the canonical source rather than duplicating it.

Reflecting anulum/scpn-quantum-control @ b72a7ec · fetched 10 Jul 2026 · sources: projects.json, github-api, pypi, project-card