Resume
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.