activity
20192026
most citedA high-fidelity quantum matter-link between ion-trap microchip modules

62 citations · 70 across the 4 of their papers we have counts for

collaborators

5 papers

quant-ph2026

The Saturable Electronic Reluctance Switch: Switchable low-power and low-noise generation of magnetic fields using permanent magnets

P. D. Taylor-Burdett, C. A. Burhan, S. Mason +3

Across many areas of science, there is a need to generate magnetic fields that are both ultra-stable and switchable on and off. Current-carrying wire configurations are switchable…

quant-ph2022★ 8 cited

Fabrication of Surface Ion Traps with Integrated Current Carrying Wires enabling High Magnetic Field Gradients

Martin Siegele-Brown, Seokjun Hong, Foni R. Lebrun-Gallagher +3

A major challenge for quantum computers is the scalable simultaneous execution of quantum gates. One approach to address this in trapped ion quantum computers is the implementation…

quant-ph2022★ 62 cited

A high-fidelity quantum matter-link between ion-trap microchip modules

M. Akhtar, F. Bonus, F. R. Lebrun-Gallagher +7

System scalability is fundamental for large-scale quantum computers (QCs) and is being pursued over a variety of hardware platforms. For QCs based on trapped ions, architectures su…

quant-ph2021

A scalable helium gas cooling system for trapped-ion applications

Foni R. Lebrun-Gallagher, Nicholas Johnson, Mariam Akhtar +5

Microfabricated ion-trap devices offer a promising pathway towards scalable quantum computing. Research efforts have begun to focus on the engineering challenges associated with de…

physics.app-ph2019

Engineering of Microfabricated Ion Traps and Integration of Advanced On-Chip Features

Zak David Romaszko, Seokjun Hong, Martin Siegele +4

Trapped atomic ions are a proven and powerful tool for the fundamental research of quantum physics. They have emerged in recent years as one of the most promising candidates for se…