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quant-ph2026

Remote entanglement need not be the bottleneck for modular trapped-ion quantum computing

Felix W. Knollmann, David P. Nadlinger, John Blue +7

Modularity underpins classical computing; as quantum processors encounter limits on fabrication yield, reliability, and size, they will also need it acutely. The bottleneck to link…

quant-ph2025

Efficient Implementation of a Quantum Algorithm with a Trapped Ion Qudit

Xiaoyang Shi, Jasmine Sinanan-Singh, Timothy J. Burke +2

Demonstration of quantum advantage remains challenging due to the increased overhead of controlling large quantum systems. While significant effort has been devoted to qubit-based…

quant-ph2025

Spontaneous Raman scattering from metastable states of Ba

Timothy J. Burke, Xiaoyang Shi, Jasmine Sinanan-Singh +2

Quantum logic gates performed via two-photon stimulated-Raman transitions in ions and atoms are fundamentally limited by spontaneous scattering errors. Recent theoretical treatment…

quant-ph2025

Collection of fluorescence from an ion using trap-integrated photonics

Felix W. Knollmann, Sabrina M. Corsetti, Ethan R. Clements +12

Spontaneously emitted photons are entangled with the electronic and nuclear degrees of freedom of the emitting atom, so interference and measurement of these photons can entangle s…

quant-ph2025

Error correction of a logical qubit encoded in a single atomic ion

Kyle DeBry, Nadine Meister, Agustin Valdes Martinez +6

Quantum error correction (QEC) is essential for quantum computers to perform useful algorithms, but large-scale fault-tolerant computation remains out of reach due to demanding req…

quant-ph2024

Integrated photonic structures for photon-mediated entanglement of trapped ions

F. W. Knollmann, E. Clements, P. T. Callahan +9

Trapped atomic ions are natural candidates for quantum information processing and have the potential to realize or improve quantum computing, sensing, and networking. These applica…