Abstract
We consider two quantum cryptographic schemes relying on encoding the key into qudits, i.e., quantum states in a [Formula presented]-dimensional Hilbert space. The first cryptosystem uses two mutually unbiased bases (thereby extending the BB84 scheme), while the second exploits all [Formula presented] available such bases (extending the six-state protocol for qubits). We derive the information gained by a potential eavesdropper applying a cloning-based individual attack, along with an upper bound on the error rate that ensures unconditional security against coherent attacks. © 2002 The American Physical Society.
Cite
CITATION STYLE
Cerf, N. J., Bourennane, M., Karlsson, A., & Gisin, N. (2002). Security of Quantum Key Distribution Using [Formula presented]-Level Systems. Physical Review Letters, 88(12), 4. https://doi.org/10.1103/PhysRevLett.88.127902
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