Violating Bell’s inequality with remotely connected superconducting qubits

被引:1
|
作者
Y. P. Zhong
H.-S. Chang
K. J. Satzinger
M.-H. Chou
A. Bienfait
C. R. Conner
É. Dumur
J. Grebel
G. A. Peairs
R. G. Povey
D. I. Schuster
A. N. Cleland
机构
[1] University of Chicago,Institute for Molecular Engineering
[2] University of California,Department of Physics
[3] University of Chicago,Department of Physics
[4] Argonne National Laboratory,Institute for Molecular Engineering and Materials Science Division
[5] Google Inc.,undefined
来源
Nature Physics | 2019年 / 15卷
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摘要
Quantum communication relies on the efficient generation of entanglement between remote quantum nodes, as entanglement is required to achieve and verify secure communications1. Remote entanglement has been realized using a number of different probabilistic schemes2,3, but deterministic remote entanglement has only been demonstrated recently, using a variety of superconducting circuit approaches4–6. However, the deterministic violation of a Bell inequality7, a strong measure of quantum correlation, has not been demonstrated so far in a superconducting quantum communication architecture, in part because achieving sufficiently strong correlation requires fast and accurate control of the emission and capture of the entangling photons. Here, we present a simple and robust architecture for achieving this benchmark result in a superconducting system.
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页码:741 / 744
页数:3
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