2-qubit states, visualized 8 ways
One entangled state, eight ways to see it. Onri Jay Benally's runnable notebook renders a 2-qubit state as Bloch spheres, Q-spheres, steering ellipsoids, Wigner functions, and more.
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One entangled state, eight ways to see it. Onri Jay Benally's runnable notebook renders a 2-qubit state as Bloch spheres, Q-spheres, steering ellipsoids, Wigner functions, and more.
A primer on the quantum dynamics of a driven two-level system, visualizing excited-state probability under the rotating-wave approximation (RWA).
QCFlows renders a quantum circuit as a live graph of correlations, so you can watch entanglement form and move layer by layer. A Qollab Spring 2026 project.
Quantum Advantage Lab runs four quantum algorithms beside their classical counterparts, streaming each step so the mechanism behind a speedup is something you watch. A Qollab Spring 2026 project.
qOrbital runs VQE on IonQ and renders a molecule's orbital as both a probability cloud and Bohmian trajectories, with hardware noise made visible. A Qollab Spring 2026 project.
What does a quantum algorithm look like while it runs? QAVE makes the state evolve gate by gate. A featured project from Qollab's Creative Challenge.