Quantum device engineering

Don't just learn quantum computing. Build with it.

QT AI guides you from your first question to a checked quantum-device simulation — physics, parameters, tooling, results and validation, with the reasoning shown at every step.

Launch QT AILive workflow: superconducting transmon qubit
Superconducting quantum processor chip mounted in a copper cryogenic package
Qiskit Fall Fest 2026
Qiskit Fall Fest 2026
Quantum Tesseract · Official host

A global week to learn, build, and meet the quantum community.

Nov 16–20, 2026 · Online · Free

Explore the event
Official Qiskit Fall Fest 2026 artwork
The application

A guided scientific workspace, not a chatbot

Open-source quantum-device tools are powerful and unforgiving. QT AI sits alongside them and keeps track of what you are building, what you already understand, where you are in the workflow, and what should happen next — so you finish the design and understand it.

Understand the physics

Every parameter comes with the reasoning behind it, pitched at the level you told us you're at.

Design a real circuit

Size a shunt capacitor and a Josephson junction, and watch the schematic and the numbers respond.

Pick the right tool

Device workflows span layout, field solving and Hamiltonian analysis. QT AI explains which one your question needs.

Validate the result

Simulated output is checked against known ranges — and flagged when it deserves a closer look.

Ready to design your first qubit?

Built for high-school and college students, undergraduates and early-career engineers.

Launch QT AI