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Quantum repeaters based on entanglement purification

Physical Review A · 1999 · Vol. 59(1) · pp. 169–181
Wolfgang DürHans J. BriegelJ. I. CiracP. Zoller

Abstract

We study the use of entanglement purification for quantum communication over long distances. For distances much longer than the coherence length of a corresponding noisy quantum channel, the fidelity of transmission is usually so low that standard purification methods are not applicable. It is possible, however, to divide the channel into shorter segments that are purified separately and then connected by the method of entanglement swapping. This method can be much more efficient than schemes based on quantum error correction, as it makes explicit use of two-way classical communication. An important question is how the noise, introduced by imperfect local operations (that constitute the protocols of purification and the entanglement swapping), accumulates in such a compound channel, and how it can be kept below a certain noise level. To treat this problem, we first study the applicability and the efficiency of entanglement purification protocols in the situation of imperfect local operations. We then present a scheme that allows entanglement purification over arbitrary long channels and tolerates errors on the percent level. It requires a polynomial overhead in time, and an overhead in local resources that grows only logarithmically with the length of the channel.

Quantum Information and CryptographyQuantum Computing Algorithms and ArchitectureQuantum Mechanics and ApplicationsQuantum entanglementOverhead (engineering)Quantum channelComputer scienceChannel (broadcasting)Amplitude damping channelQuantumCoherence (philosophical gambling strategy)ImperfectNoise (video)

Funding

  • Austrian Science Fund
Citations
761
FWCI
14.61
field-weighted impact
References
17
Percentile
99%
vs. same field & year
Citations per year
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References
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Physical Review A · 1997 · 1,074 citations
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Physics Letters A · 1996 · 519 citations
Quantum cryptography based on Bell’s theorem
Physical Review Letters · 1991 · 10,462 citations
Mixed-state entanglement and quantum error correction
Physical Review A · 1996 · 5,212 citations
Communication by EPR devices
Physics Letters A · 1982 · 1,446 citations
Sending entanglement through noisy quantum channels
Physical Review A · 1996 · 808 citations
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