activity
20242026
collaborators

5 papers

quant-ph2026

Designer Codes from GALA: Compact, Self-Dual, and Rate-1/2 QEC on Reconfigurable Atom Arrays

Willers Yang, Casey Duckering, Arpit Dua

High rate quantum low-density parity-check codes on reconfigurable neutral-atom arrays can reduce the overhead of quantum error correction, but near-term devices support only hundr…

quant-ph2026

Towards Ultra-High-Rate Quantum Error Correction with Reconfigurable Atom Arrays

Chen Zhao, Casey Duckering, Andi Gu +2

Quantum error correction is widely believed to be essential for large-scale quantum computation, but the required qubit overhead remains a central challenge. Quantum low-density pa…

quant-ph2025

Low-Overhead Transversal Fault Tolerance for Universal Quantum Computation

Hengyun Zhou, Chen Zhao, Madelyn Cain +7

Fast, reliable logical operations are essential for realizing useful quantum computers. By redundantly encoding logical qubits into many physical qubits and using syndrome measurem…

quant-ph2025

Resource Analysis of Low-Overhead Transversal Architectures for Reconfigurable Atom Arrays

Hengyun Zhou, Casey Duckering, Chen Zhao +5

Neutral atom arrays have recently emerged as a promising platform for fault-tolerant quantum computing. Based on these advances, including dynamically-reconfigurable connectivity a…

quant-ph2024

Experimental Demonstration of Logical Magic State Distillation

Pedro Sales Rodriguez, John M. Robinson, Paul Niklas Jepsen +70

Realizing universal fault-tolerant quantum computation is a key goal in quantum information science. By encoding quantum information into logical qubits utilizing quantum error cor…