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20172022
most citedIon trap architectures and new directions

26 citations · 26 across the 2 of their papers we have counts for

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5 papers · 1 filter

quant-ph2022

Routing Single Photons from a Trapped Ion Using a Photonic Integrated Circuit

Uday Saha, James D. Siverns, John Hannegan +4

Trapped ions are promising candidates for nodes of a scalable quantum network due to their long-lived qubit coherence times and high-fidelity single and two-qubit gates. Future qua…

quant-ph2021

Improving entanglement generation rates in trapped ion quantum networks using nondestructive photon measurement and storage

John Hannegan, James D. Siverns, Jake Cassell +1

Long range quantum information processing will require the integration of different technologies to form hybrid architectures combining the strengths of multiple quantum systems. I…

quant-ph2019

Quantum interference between photons from an atomic ensemble and a remote atomic ion

A. N. Craddock, J. Hannegan, D. P. Ornelas-Huerta +6

Advances in the distribution of quantum information will likely require entanglement shared across a hybrid quantum network. Many entanglement protocols require the generation of i…

quant-ph2018

Demonstration of Slow Light in a Rubidium Vapour Using Single Photons from a Trapped Ion

James D. Siverns, John Hannegan, Qudsia Quraishi

Practical implementation of quantum networks are likely to interface different types of quantum systems. When photonic interconnects link the systems together, they must preserve t…

quant-ph201726 cited

Ion trap architectures and new directions

James D. Siverns, Qudsia Quraishi

Trapped ion technology has seen advances in performance, robustness, and versatility over the last decade. With increasing numbers of trapped ion groups world-wide, a myriad of tra…