Quantum Computing & Information Theory
I lead the Quantum Architecture Group. Our research focuses on developing scalable quantum error correction protocols, topological quantum computing models, and studying the limits of quantum information transmission in noisy environments.
45+
Papers Published
2,400
Citations
34
h-index
Selected Publications
Journal
Topological Error Correction in Surface Codes under Correlated Noise
Physical Review Letters, 2025
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Conference
Fault-Tolerant Logical Gates on Near-Term Devices
ACM Symposium on Theory of Computing (STOC), 2024
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PHYS 230: Introduction to Quantum Computing
Graduate level introduction to quantum algorithms, circuits, quantum density matrices, and quantum information processing.
PHYS 112: Advanced Classical Electrodynamics
Undergraduate level, focusing on Maxwell's equations, electromagnetic waves, boundary-value problems, and radiation.