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Registry Listing Plan

Date: 2026-05-06

This document is the submission pack for external registry listings. It keeps claims bounded until the paper set has public preprint identifiers.

Canonical Metadata

Field Value
Project name scpn-quantum-control
Short title SCPN Quantum Control
Repository https://github.com/anulum/scpn-quantum-control
Documentation https://anulum.github.io/scpn-quantum-control
PyPI https://pypi.org/project/scpn-quantum-control/
Zenodo concept DOI https://doi.org/10.5281/zenodo.18821929
Current Zenodo version DOI https://doi.org/10.5281/zenodo.18821930
Licence AGPL-3.0-or-later; commercial licence available
Contact protoscience@anulum.li
ORCID 0009-0009-3560-0851
Primary language Python with optional Rust acceleration
Domain quantum computing, quantum simulation, Kuramoto--XY oscillators

Conservative One-Line Description

scpn-quantum-control is a reproducible Kuramoto--XY quantum-simulation workflow for heterogeneous oscillator networks, with Qiskit execution paths, Rust-accelerated Hamiltonian construction, hardware raw-count packaging, and artefact-first benchmark regeneration.

Conservative Long Description

scpn-quantum-control provides a Python/Qiskit workflow for mapping heterogeneous Kuramoto oscillator networks to XY Hamiltonians, generating digital quantum circuits, packaging IBM hardware raw counts, and regenerating analysis and benchmark artefacts from committed scripts. The package includes Rust-accelerated hot paths, topology-informed ansatz tools, readout and symmetry-aware analysis utilities, and no-QPU reproducibility commands such as scpn-bench reproduce-methods, scpn-bench fim-all, and scpn-bench all.

The public claim boundary is deliberately narrow: the package is research software for reproducible NISQ workflows and small-system hardware phenomenology. It does not claim broad quantum advantage, clinical causation, universal error protection, or DLA-parity-only robustness.

Keywords

  • quantum computing
  • quantum simulation
  • Qiskit
  • Kuramoto model
  • XY Hamiltonian
  • NISQ
  • reproducibility
  • Rust acceleration
  • error mitigation
  • IBM Quantum
  • oscillator networks

Target Registry Status

Target Status Action
QOSF awesome-quantum-software Already listed No duplicate submission. The project appears under Python quantum simulators.
Quantiki Ready for manual account-gated submission Submit as a project/news item after account approval, using the conservative copy below.
best-of-python Defer Current list categories are general Python infrastructure; this package is specialised scientific software. Avoid a low-fit submission unless maintainers request it.
Papers With Code Blocked until preprint IDs exist Add repository only after arXiv/JOSS entries exist so the code can attach to a paper.
SciCrunch RRID Ready for manual/resource form Submit as software/resource; record the RRID in paper methods only after it resolves.
Open Hub Ready for manual account-gated submission Add repository URL and verify crawler import; no paper identifier required.
Research Software Directory Ready but access-gated Requires RSD account/organisation access; use GitHub and Zenodo metadata import where available.

Quantiki Draft

Title:

scpn-quantum-control: reproducible Kuramoto--XY quantum-simulation workflows

Body:

scpn-quantum-control is an open-source research-software package for
reproducible Kuramoto--XY quantum-simulation workflows. It maps heterogeneous
oscillator-network coupling matrices to XY Hamiltonians, generates Qiskit
circuits, packages IBM Quantum raw-count artefacts with job IDs and integrity
hashes, and regenerates methods/FIM/DLA benchmark tables from committed
scripts.

The project is intentionally conservative in its claims. It reports
small-system NISQ hardware phenomenology and reproducible methods
infrastructure, not broad quantum advantage or universal hardware protection.

Repository: https://github.com/anulum/scpn-quantum-control
Documentation: https://anulum.github.io/scpn-quantum-control
Zenodo: https://doi.org/10.5281/zenodo.18821929

SciCrunch RRID Draft

Resource name:

scpn-quantum-control

Resource type:

Software tool

Description:

Research software for reproducible Kuramoto--XY quantum-simulation workflows,
including Qiskit circuit generation, IBM hardware raw-count packaging,
Rust-accelerated Hamiltonian construction, topology-informed ansatz tools, and
artefact-first benchmark regeneration.

Homepage/source:

https://github.com/anulum/scpn-quantum-control

Persistent identifier:

https://doi.org/10.5281/zenodo.18821929

Open Hub Draft

Project name:

scpn-quantum-control

Source repository:

https://github.com/anulum/scpn-quantum-control.git

Description:

Reproducible Kuramoto--XY quantum-simulation workflow with Qiskit hardware
execution paths, Rust-accelerated Hamiltonian construction, raw-count
provenance, and generated benchmark artefacts.

Research Software Directory Draft

Short description:

Reproducible Kuramoto--XY quantum-simulation workflow for heterogeneous
oscillator networks, Qiskit execution, raw-count provenance, and artefact-first
benchmark regeneration.

Markdown description:

scpn-quantum-control is a research-software package for mapping heterogeneous
Kuramoto oscillator networks to XY Hamiltonians and running reproducible NISQ
workflow studies. It provides Qiskit circuit generation, IBM hardware
raw-count packaging, Rust-accelerated Hamiltonian construction,
topology-informed ansatz utilities, and one-command regeneration of committed
methods and FIM benchmark artefacts.

The package is designed for auditability: publication tables are generated from
committed JSON/CSV artefacts and scripts; hardware claims are tied to raw
counts, job IDs, and SHA-256 manifests; and unsupported claims are explicitly
blocked in the public documentation.

URLs:

Source: https://github.com/anulum/scpn-quantum-control
Documentation: https://anulum.github.io/scpn-quantum-control
DOI: https://doi.org/10.5281/zenodo.18821929
PyPI: https://pypi.org/project/scpn-quantum-control/

Papers With Code Draft

Use only after an arXiv or journal page exists.

Repository:

https://github.com/anulum/scpn-quantum-control

Paper relation:

Official implementation and artefact package.

Task tags to consider:

quantum simulation
quantum computing
error mitigation

Submission Rules

  • Do not submit the package to a registry category where the scientific fit is weak.
  • Do not announce broad quantum advantage.
  • Do not announce clinical, biological, or consciousness causation.
  • Do not present IBM hardware artefacts without raw-count and job-ID context.
  • Do not use Papers With Code before paper identifiers exist.
  • Record every successful external submission in ROADMAP.md and a dated docs/*_submission_*.md file.