DOAJ Open Access 2024

Integrated Physical Layer Key Distribution by Optical Steganography in Quantum Noise Stream Cipher System

Yuanxiang Wang Hanwen Luo Tian Qiu Linsheng Zhong Xiaoxiao Dai +4 lainnya

Abstrak

To counter heterodyne measurements, correlation attacks, and known plaintext attacks, seed key refresh is critical to the security of a quantum noise stream cipher system. Integrated key distribution is an important means to reduce the deployment cost, as key exchange and public transmission are performed over the same channel. In this paper, we propose a novel method for integrated key distribution by optical steganography based on dither-remodulation in a bias controller of the Mach-Zehnder modulator. No extra wavelength or bandwidth is used for the stealth channel, which is transmitted together within the public channel. The concealing depth of the stealth signal reaches −36.2 dB, and its steganographic effect provides additional security, which further improves the overall security of the optical physical layer. The bidirectional stealth transmission can support light-weight temporary key exchange mechanism, combined with asymmetric encryption algorithm, to achieve high security and forward/backward security of seed keys. We experimentally demonstrate a real-time integrated key distribution via optical steganography in a QNSC system. The experimental results show that a real-time bidirectional stealth link is established at a rate of 1 kbps in a fiber transmission distance of 97 km for a public QNSC transmission at a rate of 32 Gbps, providing a seed key refresh frequency of over 1 Hz.

Penulis (9)

Y

Yuanxiang Wang

H

Hanwen Luo

T

Tian Qiu

L

Linsheng Zhong

X

Xiaoxiao Dai

Q

Qi Yang

L

Lei Deng

D

Deming Liu

M

Mengfan Cheng

Format Sitasi

Wang, Y., Luo, H., Qiu, T., Zhong, L., Dai, X., Yang, Q. et al. (2024). Integrated Physical Layer Key Distribution by Optical Steganography in Quantum Noise Stream Cipher System. https://doi.org/10.1109/JPHOT.2024.3495834

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Informasi Jurnal
Tahun Terbit
2024
Sumber Database
DOAJ
DOI
10.1109/JPHOT.2024.3495834
Akses
Open Access ✓