collaborators
Showing quant-phShow all

5 papers · 1 filter

quant-ph2025

Repeated ancilla reuse for logical computation on a neutral atom quantum computer

J. A. Muniz, D. Crow, H. Kim +59

Quantum processors based on neutral atoms trapped in arrays of optical tweezers have appealing properties, including relatively easy qubit number scaling and the ability to enginee…

quant-ph2025

Fault-tolerant quantum computation with a neutral atom processor

Ben W. Reichardt, Adam Paetznick, David Aasen +69

Quantum computing experiments are transitioning from running on physical qubits to using encoded, logical qubits. Fault-tolerant computation can identify and correct errors, and ha…

quant-ph2024

High-fidelity universal gates in the Yb ground state nuclear spin qubit

J. A. Muniz, M. Stone, D. T. Stack +50

Arrays of optically trapped neutral atoms are a promising architecture for the realization of quantum computers. In order to run increasingly complex algorithms, it is advantageous…

quant-ph2024

Site-selective cavity readout and classical error correction of a 5-bit atomic register

Beili Hu, Josiah Sinclair, Edita Bytyqi +5

Optical cavities can provide fast and non-destructive readout of individual atomic qubits; however, scaling up to many qubits remains a challenge. Using locally addressed excited-s…

quant-ph2024

Iterative assembly of Yb atom arrays with cavity-enhanced optical lattices

M. A. Norcia, H. Kim, W. B. Cairncross +47

Assembling and maintaining large arrays of individually addressable atoms is a key requirement for continued scaling of neutral-atom-based quantum computers and simulators. In this…