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Multipartite Mixed-Species Entanglement over a Quantum Network

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arxiv 2506.14334 v1 pith:BORXHFDE submitted 2025-06-17 quant-ph

Multipartite Mixed-Species Entanglement over a Quantum Network

classification quant-ph
keywords textqubitsentangledentanglementmixed-speciesnetworkstatesfour
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We generate multipartite entangled states of two, three and four matter qubits, where the entanglement is distributed over macroscopic distances via a photonic network link. Trapped-ion ${}^{88}\text{Sr}^+$ qubits are entangled directly via the optical fibre link, and the entanglement is subsequently extended to ${}^{43}\text{Ca}^+$ memory qubits co-trapped in each network node, using local mixed-species logic gates. We create remotely entangled $\text{Sr}^+$-$\text{Ca}^+$ and $\text{Ca}^+$-$\text{Ca}^+$ states, as well as mixed-species Greenberger-Horne-Zeilinger (GHZ) states of up to four qubits. We demonstrate storage of the remotely-entangled memory qubits for $\sim10~\text{s}$, more than $100\times$ the creation time.

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    quant-ph 2026-06 unverdicted novelty 7.0

    First fully distributed GHZ state across a three-node network of individual atomic qubits, with fidelity bounds 0.841(17) to 0.881(17), entanglement rate 0.095(5)/s, and Mermin inequality violation closing the detecti...