Abstract
We establish a lower bound on the asymptotic secret key rate of continuous-variable quantum key distribution with a discrete modulation of coherent states. The bound is valid against collective attacks and is obtained by formulating the problem as a semidefinite program. We illustrate our general approach with the quadrature-phase-shift-keying modulation scheme and show that distances over 100 km are achievable for realistic values of noise. We also discuss the application to more complex quadrature-amplitude-modulation schemes. This result opens the way to establishing the full security of continuous-variable protocols with a discrete modulation, and thereby to the large-scale deployment of these protocols for quantum key distribution.
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CITATION STYLE
Ghorai, S., Grangier, P., Diamanti, E., & Leverrier, A. (2019). Asymptotic Security of Continuous-Variable Quantum Key Distribution with a Discrete Modulation. Physical Review X, 9(2). https://doi.org/10.1103/PhysRevX.9.021059
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