Observation of Entangled States of a Fully Controlled 20-Qubit System

We generate and characterize entangled states of a register of 20 individually controlled qubits, where each qubit is encoded into the electronic state of a trapped atomic ion. Entanglement is generated amongst the qubits during the out-of-equilibrium dynamics of an Ising-type Hamiltonian, engineere...

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Veröffentlicht in:Physical review. X 2018-04, Vol.8 (2), p.021012, Article 021012
Hauptverfasser: Friis, Nicolai, Marty, Oliver, Maier, Christine, Hempel, Cornelius, Holzäpfel, Milan, Jurcevic, Petar, Plenio, Martin B., Huber, Marcus, Roos, Christian, Blatt, Rainer, Lanyon, Ben
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Sprache:eng
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Zusammenfassung:We generate and characterize entangled states of a register of 20 individually controlled qubits, where each qubit is encoded into the electronic state of a trapped atomic ion. Entanglement is generated amongst the qubits during the out-of-equilibrium dynamics of an Ising-type Hamiltonian, engineered via laser fields. Since the qubit-qubit interactions decay with distance, entanglement is generated at early times predominantly between neighboring groups of qubits. We characterize entanglement between these groups by designing and applying witnesses for genuine multipartite entanglement. Our results show that, during the dynamical evolution, all neighboring qubit pairs, triplets, most quadruplets, and some quintuplets simultaneously develop genuine multipartite entanglement. Witnessing genuine multipartite entanglement in larger groups of qubits in our system remains an open challenge.
ISSN:2160-3308
2160-3308
DOI:10.1103/PhysRevX.8.021012