activity
20172020
most citedHigh-Fidelity, Single-Shot, Quantum-Logic-Assisted Readout in a Mixed-Species Ion Chain

2 citations · 3 across the 2 of their papers we have counts for

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quant-ph2020

Integrated multi-wavelength control of an ion qubit

Robert J. Niffenegger, Jules Stuart, Cheryl Sorace-Agaskar +10

Monolithic integration of control technologies for atomic systems is a promising route to the development of quantum computers and portable quantum sensors. Trapped atomic ions for…

quant-ph2019

Dual-Species, Multi-Qubit Logic Primitives for Ca+/Sr+ Trapped-Ion Crystals

C. D. Bruzewicz, R. McConnell, J. Stuart +2

We demonstrate key multi-qubit quantum logic primitives in a dual-species trapped-ion system based on Ca+ and Sr+ ions, using two optical qubits with quantum-logic-co…

quant-ph2019

Trapped-Ion Quantum Computing: Progress and Challenges

Colin D. Bruzewicz, John Chiaverini, Robert McConnell +1

Trapped ions are among the most promising systems for practical quantum computing (QC). The basic requirements for universal QC have all been demonstrated with ions and quantum alg…

quant-ph2018

Chip-integrated voltage sources for control of trapped ions

J. Stuart, R. Panock, C. D. Bruzewicz +5

Trapped-ion quantum information processors offer many advantages for achieving high-fidelity operations on a large number of qubits, but current experiments require bulky external…

quant-ph2018

Evidence for multiple mechanisms underlying surface electric-field noise in ion traps

J. A. Sedlacek, J. Stuart, D. H. Slichter +4

Electric-field noise from ion-trap electrode surfaces can limit the fidelity of multiqubit entangling operations in trapped-ion quantum information processors and can give rise to…