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Remote quantum clock synchronization without synchronized clocks

delete2018-08-15
delete55
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OA
AI
E
Ebubechukwu O. Ilo-Okeke
T
Tessler, Louis
D
Dowling, Jonathan P.
B
Byrnes, Tim *
DOI:10.1038/s41534-018-0090-2delete
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Abstract

Abstract

En 中文
A major outstanding problem for many quantum clock synchronization protocols is the hidden assumption of a common phase reference between the parties to be synchronized. In general, the definition of the quantum states between two parties do not have consistent phase definitions, which can lead to an unknown systematic error. We show that despite prior arguments to the contrary, it is possible to remove this unknown phase via entanglement purification. This closes the loophole for entanglement based quantum clock synchronization protocols, which is a non-local approach to synchronize two clocks independent of the properties of the intervening medium. Starting with noisy Bell pairs, we show that the scheme produces a singlet state for any combination of (i) differing basis conventions for Alice and Bob; (ii) an overall time offset in the execution of the purification algorithm; and (iii) the presence of a noisy channel. Error estimates reveal that better performance than existing classical Einstein synchronization protocols should be achievable using current technology.
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Journal

npj Quantum Information cover
npj Quantum Information
IF:
8.3
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1.4K
Citations:
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Organization

L
louisiana state university system
Scholars:
2.3W
Papers: 2.0W
Citations: 15
E
east china normal university
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N
NYU Shanghai
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501
Papers: 577
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