Research Areas
Condensed Matter Physics; Quantum Physics
Research Type
Theorist
Research Website
Current Projects
Quantum error correction when the noise is biased, Scalable fault-tolerant quantum error correction with bosonic qubits
Research
Theory of quantum information processing and quantum computing, quantum optics, quantum control, quantum error correction, and quantum algorithms.
Education
Ph.D. 2014, Stanford University
Selected Publications
- The Kerr-Cat Qubit: Stabilization, Readout, and Gates, arXiv:1907.12131
- Bias-preserving gates with stabilized cat qubits, arXiv:1905.00450.
- Stabilized Cat in Driven Nonlinear Cavity: A Fault-Tolerant Error Syndrome Detector, Phys. Rev. X 9, 041009 (2019).
- Quantum annealing with all-to-all connected nonlinear oscillators, Nature Comm. 8, 15785 (2017).
- Engineering the quantum states of light in a Kerr-nonlinear resonator by two-photon driving, npj Quantum Information 3, 18 (2017).
- Resonance fluorescence from an artificial atom in squeezed vacuum, Phys. Rev. X 6, 031004 (2016)
- High-fidelity resonator-induced phase gate with single-mode squeezing, Phys. Rev. Lett. 116, 180501 (2016)
Patents
- Quantum Information Processing with an asymmetric error channel, WO2020/068237
- Quantum processor, and method of quantum processing, US10262276B2