arXiv · quant-ph/0302078
Security of Quantum Key Distribution with entangled quNits
Abstract
We consider a generalisation of Ekert's entanglement-based quantum cryptographic protocol where qubits are replaced by qu$N$its (i.e., N-dimensional systems). In order to study its robustness against optimal incoherent attacks, we derive the information gained by a potential eavesdropper during a cloning-based individual attack. In doing so, we generalize Cerf's formalism for cloning machines and establish the form of the most general cloning machine that respects all the symmetries of the problem. We obtain an upper bound on the error rate that guarantees the confidentiality of quNit generalisations of the Ekert's protocol for qubits.
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Thomas Durt, Dagomir Kaszlikowski, Jing-Ling Chen, L. C. Kwek. 2003-04-14. Security of Quantum Key Distribution with entangled quNits. https://doi.org/10.1103/physreva.69.032313
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