3 citations · 3 across the 3 of their papers we have counts for
6 papers
Logical qubits with erasure conversion using metastable neutral atoms
Bichen Zhang, Genyue Liu, Guillaume Bornet +6
Implementing large-scale quantum algorithms with practical advantage will require fault-tolerance achieved through quantum error correction, but the associated overhead is prohibit…
High-fidelity neutral atom gates leveraging low-rank Hessian optimization
Genyue Liu, Guillaume Bornet, Deniz Kurdak +4
Quantum optimal control can produce fast and robust multi-qubit gates, but experimentally calibrating the resulting high-dimensional waveforms remains challenging because direct se…
Fast single-atom preparation in optical tweezers via Rydberg blockade
Yiyi Li, Vernon M. Hughes, Michael Peper +4
Continuously replenished optical tweezer arrays will unlock unlimited-depth quantum circuits with neutral atom qubits. A key bottleneck limiting the cycle time of these systems is…
Scalable Postselection of Quantum Resources
J. Wilson Staples, Winston Fu, Jeff D. Thompson
The large overhead imposed by quantum error correction is a critical challenge to the realization of quantum computers, and motivates searching for alternative error correcting cod…
Fast, continuous and coherent atom replacement in a neutral atom qubit array
Yiyi Li, Yicheng Bao, Michael Peper +2
Neutral atom quantum processors are a promising platform for scalable quantum computing. An obstacle to implementing deep quantum circuits is managing atom loss, which constitutes…
Spectroscopy and modeling of Yb Rydberg states for high-fidelity two-qubit gates
Michael Peper, Yiyi Li, Daniel Y. Knapp +8
Highly excited Rydberg states and their interactions play an important role in quantum computing and simulation. These properties can be predicted accurately for alkali atoms with…