Powerful, automated analysis and design of quantum microwave chips & devices [Energy-Participation Ratio and more]
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Updated
Jul 17, 2026 - Python
Powerful, automated analysis and design of quantum microwave chips & devices [Energy-Participation Ratio and more]
Everything you need for quantum hardware engineering in the field. Curated by Onri Jay Benally, an Indigenous American Quantum Hardware Engineer.
Analysis of the cavity Blockade effect
Parametric study of a superconducting transmon qubit coupled to a CPW meander resonator. Mapped pad geometry to qubit frequency and anharmonicity using Qiskit Metal + scqubits.
Simple lumped element models for superconducting circuits.
First proposal for quantum state tomography of the CMB at 160 GHz using a Josephson parametric amplifier at 20 mK. Reconstructing the Wigner function and measuring photon bunching g(2)(0)=2 of primordial photons. An open research roadmap bridging cQED and observational cosmology. DOI: 10.5281/zenodo.20836974
Numerical superconducting-circuit analysis in Python.
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