522 citations
- Duke UniversityUS2 papers
- Joint Center for Quantum Information and Computer ScienceUS2 papers
- Joint Quantum InstituteUS2 papers
- University of Maryland, College ParkUS2 papers
- City, University of LondonGB1 paper
- ColdQuanta, Inc., DBA Infleqtion (United States)US1 paper
- Colorado State UniversityUS1 paper
- Durham UniversityGB1 paper
- Georgia Institute of TechnologyUS1 paper
- Joint Institute for Laboratory AstrophysicsUS1 paper
- Microsoft (United States)US1 paper
- National Institute of Standards and TechnologyUS1 paper
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physics.atom-ph2021★ 2 cited
High stability cryogenic system for quantum computing with compact packaged ion traps
Robert F. Spivey, Ismail V. Inlek, Zhubing Jia +9
Cryogenic environments benefit ion trapping experiments by offering lower motional heating rates, collision energies, and an ultra-high vacuum (UHV) environment for maintaining lon…
physics.atom-ph2020★ 14 cited
Frequency Ratio Measurements with 18-digit Accuracy Using a Network of Optical Clocks
Boulder Atomic Clock Optical Network, Collaboration, : +35
Atomic clocks occupy a unique position in measurement science, exhibiting higher accuracy than any other measurement standard and underpinning six out of seven base units in the SI…
physics.atom-ph2017★ 143 cited
Robust two-qubit gates in a linear ion crystal using a frequency-modulated driving force
Pak Hong Leung, Kevin A. Landsman, Caroline Figgatt +3
In an ion trap quantum computer, collective motional modes are used to entangle two or more qubits in order to execute multi-qubit logical gates. Any residual entanglement between…