Python framework for designing & analyzing superconducting quantum chips. Lite-by-default, headless-friendly, EDA-grade.
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Updated
Sep 1, 2026 - Jupyter Notebook
Python framework for designing & analyzing superconducting quantum chips. Lite-by-default, headless-friendly, EDA-grade.
KLayout Python library for integrated quantum circuit design.
ARTEMIS (Adaptive mesh Refinement Time-domain ElectrodynaMIcs Solver) couples the Maxwell's equations implementation in WarpX with classical equations that describe quantum material behavior (such as, LLG equation for micromagnetics and London equation for superconducting materials) for quantifying the performance of next-generation microelectro…
Example notebooks for using KQCircuits
Measurement scripts for the OCS QP project using `qua` and `labber` mostly
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.
Snowcap Compute — independent third-party profile of a public API surface, by API Evangelist. Snowcap Compute is building the world's first commercial superconducting computing platform, operating at 4.5 Kelvin to deliver breakthrough energy efficiency and performance for AI and data-center workloads.
Seeqc — independent third-party profile of a public API surface, by API Evangelist. Seeqc is developing the first digital quantum computing platform for businesses, integrating all core functions of a quantum computer - qubits together with classical control logic - onto a single superconducting chip operating at millikelvin temperatures.
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