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Observation of multi-component atomic Schr\'odinger cat states of up to 20 qubits

Authors :
Song, Chao
Xu, Kai
Li, Hekang
Zhang, Yuran
Zhang, Xu
Liu, Wuxin
Guo, Qiujiang
Wang, Zhen
Ren, Wenhui
Hao, Jie
Feng, Hui
Fan, Heng
Zheng, Dongning
Wang, Dawei
Wang, H.
Zhu, Shiyao
Source :
Science 365, 574-577 (2019)
Publication Year :
2019

Abstract

We report on deterministic generation of 18-qubit genuinely entangled Greenberger-Horne-Zeilinger (GHZ) state and multi-component atomic Schr\"{o}dinger cat states of up to 20 qubits on a quantum processor, which features 20 superconducting qubits interconnected by a bus resonator. By engineering a one-axis twisting Hamiltonian enabled by the resonator-mediated interactions, the system of qubits initialized coherently evolves to an over-squeezed, non-Gaussian regime, where atomic Schr\"{o}dinger cat states, i.e., superpositions of atomic coherent states including GHZ state, appear at specific time intervals in excellent agreement with theory. With high controllability, we are able to take snapshots of the dynamics by plotting quasidistribution $Q$-functions of the 20-qubit atomic cat states, and globally characterize the 18-qubit GHZ state which yields a fidelity of $0.525\pm0.005$ confirming genuine eighteen-partite entanglement. Our results demonstrate the largest entanglement controllably created so far in solid state architectures, and the process of generating and detecting multipartite entanglement may promise applications in practical quantum metrology, quantum information processing and quantum computation.<br />Comment: 10 pages, 6 figures, 1 table including supplementary material

Subjects

Subjects :
Quantum Physics

Details

Database :
arXiv
Journal :
Science 365, 574-577 (2019)
Publication Type :
Report
Accession number :
edsarx.1905.00320
Document Type :
Working Paper
Full Text :
https://doi.org/10.1126/science.aay0600