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quant-ph2026

Tripartite entanglement of remote atomic qubits

Isabella Goetting, Ashish Kalakuntla, Mikhail Shalaev +6

Distributed entanglement across multi-node quantum networks is essential for a wide range of quantum technologies, including modular quantum computers, distributed sensing and metr…

quant-ph2025

Entanglement fidelity limits of photonically-networked atomic qubits from recoil and timing

Yichao Yu, Sagnik Saha, Mikhail Shalaev +5

The remote entanglement of two atomic quantum memories through photonic interactions is accompanied by atomic momentum recoil. When the interactions occur at different times, such…

quant-ph2025

Non-invasive mid-circuit measurement and reset on atomic qubits

Zuo-Yao Chen, Isabella Goetting, George Toh +8

Mid-circuit measurement and reset of subsets of qubits is a crucial ingredient of quantum error correction and many quantum information applications. Measurement of atomic qubits i…

quant-ph2025

Photonic Networking of Quantum Memories in High-Dimensions

Mikhail Shalaev, Sagnik Saha, George Toh +6

Quantum networking enables the exchange of quantum information between physically separated quantum systems, which has applications ranging from quantum computing to unconditionall…

quant-ph2024

Fast photon-mediated entanglement of continuously-cooled trapped ions for quantum networking

Jameson O'Reilly, George Toh, Isabella Goetting +8

We entangle two co-trapped atomic barium ion qubits by collecting single visible photons from each ion through in-vacuo 0.8 NA objectives, interfering them through an integrated fi…

quant-ph2024

High-fidelity remote entanglement of trapped atoms mediated by time-bin photons

Sagnik Saha, Mikhail Shalaev, Jameson O'Reilly +5

Photonic interconnects between quantum processing nodes are likely the only way to achieve large-scale quantum computers and networks. The bottleneck in such an architecture is the…