11 papers
A Quantum Interface Between Neutral-Atoms and Trapped-Ions Quantum Registers
Ayelet Hasson, Gal Dekel, Ehud Shahar +2
Hybrid quantum systems combining neutral atoms and trapped ions offer the prospect of integrating the scalability of atom arrays with the high-fidelity control available in trapped…
Trapped-Ion Multiqubit Gates are Compatible with Scalable Quantum Error Correction
Ori Grossman, Yotam Kadish, Snir Gazit +3
We construct a detailed microscopic noise model for multi-qubit (MQ) gate operations in the context of trapped ion architecture with all-to-all connectivity. We find that phonon he…
Digital Predistortion of Optical Fields for Fast and High-Fidelity Entangling Gates in Trapped-Ion Qubits
Jovan Markov, Yotam Shapira, Ayelet Hasson +4
High-fidelity quantum gates require precise classical control signals, yet the analog hardware delivering these signals introduces nonlinear distortions that degrade gate performan…
Direct comparison of multi-ion optical clocks based on Ca and Sr
Yosef Sokolik, Roee Ozeri, Nitzan Akerman
We report the first direct frequency comparison between two multi-ion optical clocks based on the S to D transition in \Ca and \Sr ions. Using linear chains of up t…
Fast design and scaling of multi-qubit gates in large-scale trapped-ion quantum computers
Lee Peleg, David Schwerdt, Jonathan Nemirovsky +5
Quantum computers based on crystals of trapped ions are a prominent technology for quantum computation. A unique feature of trapped ions is their long-range Coulomb interactions, w…
Probing New Forces with Nuclear Clocks
Cédric Delaunay, Seung J. Lee, Roee Ozeri +3
Clocks based on nuclear isomer transitions promise exceptional stability and precision. The low transition energy of the thorium-229 isomer makes it an ideal candidate, as it has b…