Institute · 02
The Institute for Quantum Computing & Information Science pushes the frontiers of quantum hardware, algorithms, and theory. From superconducting qubits to photonic networks, our three laboratories address the full stack of quantum computation.
Laboratories
Each lab operates independently with dedicated staff, shared institute infrastructure, and its own research agenda.
Design and fabrication of superconducting qubits, ion traps, and photonic quantum devices. Research on coherence times, gate fidelity, and scalable qubit interconnects.
Designing quantum algorithms that yield provable speedups for optimization, simulation, and cryptography. Formal complexity-theoretic foundations of quantum advantage.
Topological surface codes, fault-tolerant gate sets, and the theory of quantum channels. Building the error-corrected substrate for universal quantum computation.
Selected Publications