3 papers
quant-ph2026
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…
quant-ph2025
Optical tweezer-controlled entanglement gates with trapped ion qubits
David Schwerdt, Lee Peleg, Gal Dekel +6
We propose an entanglement protocol where ions illuminated by optical tweezers serve as control qubits. We experimentally demonstrate this proposal with a controlled Mlmer-S$ø…
quant-ph2024
Scalable architecture for trapped-ion quantum computing using RF traps and dynamic optical potentials
David Schwerdt, Lee Peleg, Yotam Shapira +9
Qubits based on ions trapped in linear radio-frequency traps form a successful platform for quantum computing, due to their high fidelity of operations, all-to-all connectivity and…