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Rapid programmable/code-length-variable, time-domain bit-by-bit code shifting for high-speed secure optical communication

机译:快速可编程/代码长度可变的时域逐位代码转换,可实现高速安全的光通信

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摘要

We propose and experimentally demonstrate a time-domain bit-by-bit code-shifting scheme that can rapidly program ultralong, code-length variable optical code by using only a dispersive element and a high-speed phase modulator for improving information security. The proposed scheme operates in the bit overlap regime and could eliminate the vulnerability of extracting the code by analyzing the fine structure of the time-domain spectral phase encoded signal. It is also intrinsically immune to eavesdropping via conventional power detection and differential-phase-shift-keying (DPSK) demodulation attacks. With this scheme, 10 Gbits/s of return-to-zero-DPSK data secured by bit-by-bit code shifting using up to 1024 chip optical code patterns have been transmitted over 49 km error free. The proposed scheme exhibits the potential for high-data-rate secure optical communication and to realize even one time pad.
机译:我们提出并通过实验证明了一种时域逐位移码方案,该方案可以仅使用色散元件和高速相位调制器来快速编程超长,码长可变的光码,从而提高信息安全性。所提出的方案在比特重叠状态下操作,并且可以通过分析时域频谱相位编码信号的精细结构来消除提取代码的脆弱性。它本质上也不受传统功率检测和差分相移键控(DPSK)解调攻击的窃听。通过这种方案,通过使用多达1024个码片光学代码模式的逐位代码移位保护的10 Gbits / s归零DPSK数据已在49 km的无错误范围内传输。所提出的方案展示了高数据速率安全光通信的潜力,甚至可以实现一个时间片。

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