Higher-dimensional orbital-angular-momentum-based quantum key distribution with mutually unbiased bases

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Author list: Mafu M, Dudley A, Goyal S, Giovannini D, McLaren M, Padgett MJ, Konrad T, Petruccione F, Lutkenhaus N, Forbes A

Publisher: American Physical Society

Place: COLLEGE PK

Publication year: 2013

Journal: Physical Review A (atomic, molecular, and optical physics and quantum information) (2469-9926)

Journal acronym: PHYS REV A

Volume number: 88

Issue number: 3

Number of pages: 8

ISSN: 2469-9926

eISSN: 2469-9934

Languages: English-Great Britain (EN-GB)


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Abstract

We present an experimental study of higher-dimensional quantum key distribution protocols based on mutually unbiased bases, implemented by means of photons carrying orbital angular momentum. We perform (d + 1) mutually unbiased measurements in a classically simulated prepare-and-measure scheme and on a pair of entangled photons for dimensions ranging from d = 2 to 5. In our analysis, we pay attention to the detection efficiency and photon pair creation probability. As security measures, we determine from experimental data the average error rate, the mutual information shared between the sender and receiver, and the secret key generation rate per photon. We demonstrate that increasing the dimension leads to an increased information capacity as well as higher key generation rates per photon. However, we find that the benefit of increasing the dimension is limited by practical implementation considerations, which in our case results in deleterious effects observed beyond a dimension of d = 4.


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Last updated on 2023-31-07 at 00:34