Published July 7, 2025
| Version 12
Preprint
Open
QuantoniumOS: A Hybrid Computational Framework for Quantum & Resonance Simulation (https://github.com/mandcony/quantoniumos)
Description
Contact: luisminier79@gmail.com
This document supports U.S. Patent Application No. 19/169,399, titled
“A Hybrid Computational Framework for Quantum and Resonance Simulation.”
The source code and research framework are open source and timestamped via:
🔗 GitHub Repository: https://github.com/mandcony/quantoniumos
Files
QuantoniumOS_ (2).pdf
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Additional details
Related works
- Is new version of
- Preprint: 10.5281/zenodo.15072877 (DOI)
- Is supplement to
- Other: https://www.linkedin.com/pulse/quantonium-hybrid-quantum-inspired-framework-enhanced-luis-minier-bm6je (URL)
- Preprint: 10.5281/zenodo.15072877 (DOI)
- Reviews
- Preprint: 10.5281/zenodo.15831396 (DOI)
Dates
- Accepted
-
2025-03-23Initial public release via Zenodo
Software
- Repository URL
- https://github.com/mandcony/quantoniumos
- Programming language
- Python , C++
- Development Status
- Active
References
- Luis, M. (2025). A Hybrid Computational Framework for Quantum and Resonance Simulation (v1.0). Zenodo. https://doi.org/10.5281/zenodo.15072877
- Oppenheim, A. V., & Schafer, R. W. (2010). *Discrete-Time Signal Processing* (3rd ed.). Prentice Hall. NIST. (2015). FIPS PUB 180-4: Secure Hash Standard. U.S. Dept. of Commerce.
- National Institute of Standards and Technology (NIST), Secure Hash Standard (SHS), FIPS PUB 180-4, U.S. Department of Commerce, 2015.
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- D. Alagic et al., "Status Report on the Second Round of the NIST Post-Quantum Cryptography Stan- dardization Process," NISTIR 8309, National Institute of Standards and Technology, 2022.
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- C. Mead, Analog VLSI and Neural Systems. Addison-Wesley, 1990.
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- T. D. Ladd et al., "Quantum Computing," Nature, vol. 464, no. 7285, pp. 45-53, 2010