Our work on quantum foundations and applications looks at fundamental questions in quantum computing, and at the path from the lab to real-world use.
Our research focuses on:
Quantum error correction: Experimental implementations of quantum error correction codes, building an experimental basis for fault-tolerant quantum computing
Quantum algorithms: Exploring variational algorithms and quantum simulation schemes for near-term quantum devices
Quantum advantage verification: Designing and conducting experiments to demonstrate quantum computational advantage
Cross-disciplinary applications: Exploring applications of quantum computing in chemical simulation, optimization, and beyond
Publications
The wiring sets a phase-blind quantum memory's gap, the weight caps its coherence