Performance Analysis of Continuous Variable Quantum Key Distribution Over Free Space Optical Channel under Fog Conditions

Authors

DOI:

https://doi.org/10.29194/NJES.29030515

Keywords:

Continuous Variable Quantum Key Distribution, Secure Key Rate, Reconciliation Efficiency

Abstract

Quantum key distribution (QKD) provides secure keys with information-theoretic security ensured by the principles of quantum mechanics. The flexibility and efficient deployment of free-space optical (FSO) quantum key distribution systems can make them highly advantageous. Despite the benefits of free-space transmission, there is still a chance of running into unfavorable weather conditions like fog. According to this study, free-space continuous variable (CV) QKD systems may be applicable when fog is present. Using attenuation based on the Kim and Kruse empirical visibility models, the performance of the models that explain the relationship between fog attenuation and air visibility is examined in order to evaluate its impact on the secure key rate (SKR) at wavelengths of 850 and 1550 nm. A comparative analysis between the two wavelengths is carried out to highlight their suitability under different weather conditions. Based on the results, 1550 nm performs better in foggy situations, reaching an SKR of 1.389379 bits/symbol, because of lower scattering losses, whereas 850 nm achieves a longer range of 12 km in clear air because of smaller diffraction divergence. The results demonstrate that wavelength selection plays a critical role in enhancing the robustness of CV-QKD systems that operate over FSO links. In addition, optimizing reconciliation efficiency (β) under thick-fog conditions greatly improved the SKR, indicating that 1550 nm operation has the ability to achieve reliable and secure quantum communication. Results show that varying β from 0.90 to 1.00 for both 850 nm and 1550 nm produces SKR enhancement of (0.63-0.80 bits/symbol) and (0.97-1.13 bits/symbol), respectively.

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Author Biographies

  • Ibtihaj Hameed Qaddoori, Institute of Laser for Postgraduate Studies, University of Baghdad, Baghdad, Iraq.

    Ibtihaj Hameed Qaddoori received the B.Sc. degree from the College of Engineering, University of Baghdad, Baghdad, Iraq, in 1995, and the M.Sc. degree from the College of Engineering, University of Baghdad, in 2016. She is currently a PhD student at the Institute of Laser for Postgraduate Studies, University of Baghdad, where she researches quantum channel estimation and analysis in quantum key distribution systems.

  • Shelan Khasro Tawfeeq, Institute of Laser for Postgraduate Studies, University of Baghdad, Baghdad, Iraq.

    Shelan Khasro Tawfeeq received the B.Sc. degree from the College of Engineering, University of Baghdad, Baghdad, Iraq, in 1990, and the M.Sc. and Ph.D. degrees from the Institute of Laser for Postgraduate Studies, University of Baghdad, in 2001 and 2006, respectively. She is currently an Assistant Professor with the Institute of Laser for Postgraduate Studies, University of Baghdad, and head of the Quantum Optics and Electronics Group, where she is involved in research on Quantum Information Science and Optical Communications.

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Published

20-09-2026

How to Cite

[1]
I. Hameed and S. Tawfeeq, “Performance Analysis of Continuous Variable Quantum Key Distribution Over Free Space Optical Channel under Fog Conditions”, NJES, vol. 29, no. 3, pp. 515–520, Sep. 2026, doi: 10.29194/NJES.29030515.

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