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Experimental quantum Hamiltonian learning

delete2017-03-13
delete190
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OA
AI
J
Jianwei Wang
S
Stefano Paesani
R
Raffaele Santagati
S
Sebastian Knauer
A
Antonio A. Gentile
N
Nathan Wiebe *
M
Maurangelo Petruzzella
J
Jeremy L. O’Brien
J
John Rarity
A
Anthony Laing
M
Mark G. Thompson *
DOI:10.1038/NPHYS4074delete
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摘要

摘要

En 中文
The efficient characterization of quantum systems(1-3), the verification of the operations of quantum devices(4-6) and the validation of underpinning physical models(7-9), are central challenges for quantum technologies(10-12) and fundamental physics(13,14). The computational cost of such studies could be improved by machine learning enhanced by quantum simulators(15,16). Here we interface two different quantum systems through a classical channel-a silicon-photonics quantum simulator and an electron spin in a diamond nitrogen-vacancy centre-and use the former to learn the Hamiltonian of the latter via Bayesian inference. We learn the salient Hamiltonian parameter with an uncertainty of approximately 10(-5). Furthermore, an observed saturation in the learning algorithm suggests deficiencies in the underlying Hamiltonian model, which we exploit to further improve the model. We implement an interactive version of the protocol and experimentally showits ability to characterize the operation of the quantum photonic device.
Keyword:
EXPERIMENTAL-VERIFICATION
LINEAR OPTICS
ENTANGLEMENT
PHOTON
QUBIT
CHIP
COMPUTATION
SIMULATION
COMPUTER
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Nature Physics
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18.4
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Microsoft
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论文数: 2.7K
被引数: 7
U
University of Bristol
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论文数: 3.0W
被引数: 5.3W
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Eindhoven University of Technology
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被引数: 2.2W
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