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We entangle each individual matter-qubit in a register of ten to a separate travelling photon.
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2022
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2018
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H. Hainzer, Laser Locking For Trapped-Ion Quantum Networks , Master’s thesis , University of Innsbruck (2018)
2018
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2020
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2022
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2022
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2022
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2022
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2023
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M. K. Joshi, C. Kokail, R. van Bijnen, F. Kranzl, T. V. Zache, R. Blatt, C. F. Roos, and P. Zoller, Exploring large-scale entanglement in quantum simulation, Nature 624
2023
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2023
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A. Winkler, Frequency Stabilization of a 729 nm Ti:Sa Laser for Qubit Manipulation in Trapped Calcium Ions , Master’s thesis , University of Innsbruck (2023)
2023
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C. M. Knaut, A. Suleymanzade, Y.-C. Wei, D. R. Assumpcao, P.-J. Stas, Y. Q. Huan, B. Machielse, E. N. Knall, M. Sutula, G. Baranes, N. Sinclair, C. De-Eknamkul, D. S. Levonian, M. K. Bhaskar, H. Park, M. Lončar, and M. D. Lukin, Entanglement of nanophotonic quantum memory nodes in a telecom network, Nature 629
2024
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V. Krutyanskiy, M. Canteri, M. Meraner, V. Krcmarsky, and B. P. Lanyon, Multimode ion-photon entanglement over 101 kilometers, PRX Quantum 5
2024
Closest in time.