Abstract
Trapped ions offer long coherence times and high-fidelity, programmable quantum operations, making them a promising platform for quantum simulation of condensed matter systems, quantum dynamics, and problems related to high-energy physics. We review selected developments in trapped-ion qubits and architectures and discuss quantum simulation applications that utilize these emerging capabilities. This review emphasizes developments in digital (gate-based) quantum simulations that exploit trapped-ion hardware capabilities, such as flexible qubit connectivity, selective midcircuit measurement, and classical feedback, to simulate models with long-range interactions, explore nonunitary dynamics, compress simulations of states with limited entanglement, and reduce the circuit depths required to prepare or simulate long-range entangled states.
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Foss-Feig, M., Pagano, G., Potter, A. C., & Yao, N. Y. (2025, March 10). Progress in Trapped-Ion Quantum Simulation. Annual Review of Condensed Matter Physics. Annual Reviews Inc. https://doi.org/10.1146/annurev-conmatphys-032822-045619
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