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Resume (English only)
Academic Achievements
Published several papers, including:
- A distillation–teleportation protocol for fault-tolerant QRAM
- Learning quantum Gibbs states locally and efficiently
- Quantum fault tolerance with constant-space and logarithmic-time overheads
- UniqueQMA vs QMA: oracle separation and eigenstate thermalization hypothesis
- Good binary quantum codes with transversal CCZ gate
- The mixed Schur transform: efficient quantum circuit and applications
- Circuit-to-Hamiltonian from tensor networks and fault tolerance
Received the Best Student Paper Award at QIP 2025.
Research Experience
Enjoyed a 3-month visit to the Simons Institute at UC Berkeley, participating in the Spring 2024 quantum program.
Education
Obtained bachelor's degrees in physics and computer science from MIT in 2022.
Background
Third-year PhD student at Harvard, advised by Anurag Anshu. Research interests include quantum complexity theory, quantum algorithms, and fault-tolerant computation. Affiliated with the Harvard Quantum Initiative and the Theory of Computation group.
Miscellany
Contact: qnguyen at g dot harvard dot edu or Twitter @nguyenquantum
Served as a program committee member for the QEC 2025 conference.