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20172020
most citedExperimental Comparison of Two Quantum Computing Architectures

522 citations · 665 across the 2 of their papers we have counts for

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quant-ph2020

Demonstration of the trapped-ion quantum-CCD computer architecture

J. M. Pino, J. M. Dreiling, C. Figgatt +9

The trapped-ion QCCD (quantum charge-coupled device) architecture proposal lays out a blueprint for a universal quantum computer. The design begins with electrodes patterned on a t…

quant-ph2018

Verified Quantum Information Scrambling

Kevin A. Landsman, Caroline Figgatt, Thomas Schuster +4

Quantum scrambling is the dispersal of local information into many-body quantum entanglements and correlations distributed throughout the entire system. This concept underlies the…

quant-ph2018

Machine learning assisted readout of trapped-ion qubits

Alireza Seif, Kevin A. Landsman, Norbert M. Linke +3

We reduce measurement errors in a quantum computer using machine learning techniques. We exploit a simple yet versatile neural network to classify multi-qubit quantum states, which…

quant-ph2018

Demonstration of Bayesian quantum game on an ion trap quantum computer

Neal Solmeyer, Norbert M. Linke, Caroline Figgatt +4

We demonstrate a Bayesian quantum game on an ion trap quantum computer with five qubits. The players share an entangled pair of qubits and perform rotations on their qubit as the s…

quant-ph2017522 cited

Experimental Comparison of Two Quantum Computing Architectures

N. M. Linke, D. Maslov, M. Roetteler +5

We run a selection of algorithms on two state-of-the-art 5-qubit quantum computers that are based on different technology platforms. One is a publicly accessible superconducting tr…