Entangled state quantum cryptography: eavesdropping on the ekert protocol

Using polarization-entangled photons from spontaneous parametric down-conversion, we have implemented Ekert's quantum cryptography protocol. The near-perfect correlations of the photons allow the sharing of a secret key between two parties. The presence of an eavesdropper is continually checked...

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Veröffentlicht in:Physical review letters 2000-05, Vol.84 (20), p.4733-4736
Hauptverfasser: Naik, DS, Peterson, CG, White, AG, Berglund, AJ, Kwiat, PG
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Sprache:eng
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Zusammenfassung:Using polarization-entangled photons from spontaneous parametric down-conversion, we have implemented Ekert's quantum cryptography protocol. The near-perfect correlations of the photons allow the sharing of a secret key between two parties. The presence of an eavesdropper is continually checked by measuring Bell's inequalities. We investigated several possible eavesdropper strategies, including pseudo-quantum-nondemolition measurements. In all cases, the eavesdropper's presence was readily apparent. We discuss a procedure to increase her detectability.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.84.4733