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Quantum Foundations
Scalable creation of long-lived multipartite entanglement
arXiv
Authors: H. Kaufmann, T. Ruster, C. T. Schmiegelow, M. A. Luda, V. Kaushal, J. Schulz, D. von Lindenfels, F. Schmidt-Kaler, U. G. Poschinger
Year
2017
Paper ID
44664
Status
Preprint
Abstract Read
~2 min
Abstract Words
126
Citations
N/A
Abstract
We demonstrate the deterministic generation of multipartite entanglement based on scalable methods. Four qubits are encoded in 40Ca^+, stored in a micro-structured segmented Paul trap. These qubits are sequentially entangled by laser-driven pairwise gate operations. Between these, the qubit register is dynamically reconfigured via ion shuttling operations, where ion crystals are separated and merged, and ions are moved in and out of a fixed laser interaction zone. A sequence consisting of three pairwise entangling gates yields a four-ion GHZ state vertψrangle=tfrac{1}{sqrt{2}}left\(vert 0000rangle+vert 1111rangleright\), and full quantum state tomography reveals a Bell state fidelity of 94.4(3)%. We analyze the decoherence of this state and employ dynamic decoupling on the spatially distributed constituents to maintain 69(5)% coherence at a storage time of 1.1 seconds.
Why This Paper Matters
- This paper contributes to the Quantum Foundations research area in the Quantum Articles archive.
- It adds a 2017 reference point for readers tracking recent quantum research.
- We demonstrate the deterministic generation of multipartite entanglement based on scalable methods.
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