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Experimental quantum cryptography with qutrits

New Journal of Physics · 2006 · Vol. 8(5) · pp. 75–75
Simon GröblacherThomas JenneweinAlipasha VaziriGregor WeihsAnton Zeilinger

Abstract

We produce two identical keys using, for the first time, entangled trinary quantum systems (qutrits) for quantum key distribution. The advantage of qutrits over the normally used binary quantum systems is an increased coding density and a higher security margin. The qutrits are encoded into the orbital angular momentum of photons, namely Laguerre-Gaussian modes with azimuthal index l +1, 0 and -1, respectively. The orbital angular momentum is controlled with phase holograms. In an Ekert-type protocol the violation of a three-dimensional Bell inequality verifies the security of the generated keys. A key is obtained with a qutrit error rate of approximately 10 %.

Orbital Angular Momentum in OpticsQuantum Information and CryptographyQuantum Mechanics and ApplicationsPhysicsQuantum key distributionQuantum cryptographyQutritQuantum mechanicsQuantumQuantum error correctionQuantum channelQuantum informationQuantum entanglement
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416
FWCI
7.26
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References
38
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References
Quantum key distribution over 67 km with a plug&play system
New Journal of Physics · 2002 · 516 citations
Proposed Experiment to Test Local Hidden-Variable Theories
Physical Review Letters · 1969 · 7,352 citations
Quantum cryptography based on Bell’s theorem
Physical Review Letters · 1991 · 10,462 citations
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