Odd-order quantum noise-like stream cipher scheme based on joint index modulation constellation shaping.

IF 3.2 2区 物理与天体物理 Q2 OPTICS
Optics express Pub Date : 2025-04-07 DOI:10.1364/OE.558376
Dongxu Zhu, Bo Liu, Jianxin Ren, Shuaidong Chen, Yaya Mao, Xiumin Song, Jianye Zhao, Lilong Zhao, Xue Tang, Mengtong Yin, Wei Dai
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引用次数: 0

Abstract

This paper proposes an odd-order quantum noise-like stream cipher scheme based on joint index modulation (JIM) constellation shaping. By utilizing subcarrier index modulation and dual-mode index techniques, additional information is transmitted through the combination distribution of silent subcarrier positions and constellation modes associated with subcarriers. An odd-order 9QAM signal is constructed, and by optimizing the index rule, constellation shaping is achieved while transmitting more information, increasing the distribution of constellation points within the signal. A 4D hyper-chaotic system is employed to implement multi-dimensional disturbances, including bitwise XOR of the original signal, subcarriers, symbols, and elevate the constellation order. Furthermore, the scheme performs upsampling on the chaotic system's initial values and actively introduces noise bits, which are appended to the initial signal as a basis state to enable key-accompanying transmission. Ultimately, the constellation-shaped 9QAM signal is escalated to a 576QAM signal with constellation shaping features. Experimental results demonstrate the successful transmission of a 2.94 Gb/s quantum noise stream signal over a 25 km single-mode fiber intensity modulation direct detection (IMDD) system. The experimental results show that the proposed JIM-576QAM1 signal provides a 0.7 dB gain at Forward error correction (FEC) = 3.8 × 10-3 compared to random distribution of the two constellation modes. The proposed scheme maintains a bit error rate (BER) of 0 for key transmission, and abruptly increases to 0.5 in the event of misalignment, indicating a high sensitivity and accuracy of the system with respect to the key. At varying received optical power, the number of masked signal power remain consistent at 20480, and the detection failure probability stays around 1, demonstrating the stability and security of the proposed quantum noise stream encryption scheme. With a key space as large as 10149, the scheme can effectively counter brute-force attacks from unauthorized receivers. The proposed scheme exhibits high reliability and security, making it a promising candidate for future optical access applications.

基于联合索引调制星座整形的奇阶量子类噪声流密码方案。
提出了一种基于联合索引调制(JIM)星座整形的奇阶量子类噪声流密码方案。利用子载波索引调制和双模索引技术,通过无噪声子载波位置和与子载波相关的星座模式的组合分布来传输附加信息。构造奇阶9QAM信号,通过优化指标规则,在传输更多信息的同时实现星座整形,增加星座点在信号内的分布。采用4D超混沌系统实现多维扰动,包括对原始信号、子载波、符号进行位进异或,提升星座阶数。此外,该方案对混沌系统的初始值进行上采样,并主动引入噪声位,这些噪声位作为基态附加到初始信号中,以实现伴随密钥传输。最终将星座形9QAM信号升级为具有星座形特征的576QAM信号。实验结果表明,在25 km单模光纤强度调制直接检测(IMDD)系统上成功传输了2.94 Gb/s的量子噪声流信号。实验结果表明,在前向纠错(FEC) = 3.8 × 10-3的情况下,与两种星座模式的随机分布相比,所提出的JIM-576QAM1信号的增益为0.7 dB。该方案在密钥传输时保持0的误码率(BER),在出现误码率偏差时,BER突然增加到0.5,表明系统对密钥具有较高的灵敏度和精度。在不同的接收光功率下,掩码信号功率数保持在20480,检测失败概率保持在1左右,证明了所提出的量子噪声流加密方案的稳定性和安全性。该方案的密钥空间高达10149,可以有效地对抗来自未授权接收方的暴力破解攻击。该方案具有较高的可靠性和安全性,是未来光接入应用的理想方案。
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来源期刊
Optics express
Optics express 物理-光学
CiteScore
6.60
自引率
15.80%
发文量
5182
审稿时长
2.1 months
期刊介绍: Optics Express is the all-electronic, open access journal for optics providing rapid publication for peer-reviewed articles that emphasize scientific and technology innovations in all aspects of optics and photonics.
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