activity
20242026
collaborators

10 papers

quant-ph2026

Strategic Plan for Neutral Atom Quantum Computation

Adrian J. Menssen, Tout Wang, Michael Gullans +54

We present a strategic plan for neutral atom quantum computation, bringing together hardware development and theory advancements to achieve the goal of practical quantum advantage.…

quant-ph2025

The Fast for the Curious: How to accelerate fault-tolerant quantum applications

Sam McArdle, Alexander M. Dalzell, Aleksander Kubica +1

We evaluate strategies for reducing the run time of fault-tolerant quantum computations, targeting practical utility in scientific or industrial workflows. Delivering a technology…

quant-ph2025

Quantum algorithms: A survey of applications and end-to-end complexities

Alexander M. Dalzell, Sam McArdle, Mario Berta +10

The anticipated applications of quantum computers span across science and industry, ranging from quantum chemistry and many-body physics to optimization, finance, and machine learn…

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

Fast correlated decoding of transversal logical algorithms

Madelyn Cain, Dolev Bluvstein, Chen Zhao +7

Quantum error correction (QEC) is required for large-scale computation, but incurs a significant resource overhead. Recent advances have shown that by jointly decoding logical qubi…

quant-ph2025

A distillation-teleportation protocol for fault-tolerant QRAM

Alexander M. Dalzell, András Gilyén, Connor T. Hann +5

We present a protocol for fault-tolerantly implementing the logical quantum random access memory (QRAM) operation, given access to a specialized, noisy QRAM device. For coherently…