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Generation of discrete frequency and wavelength for secured computer networks system using integrated ring resonators

机译:使用集成环形谐振器为安全计算机网络系统生成离散频率和波长

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摘要

In this study, a system of discrete optical pulse generation via a series of microring resonator (MRR) is presented. Chaotic signals can be generated by an optical soliton or a Gaussian pulse within a MRR system. Large bandwidth signals of optical soliton are generated by input pulse propagating within the MRRs, which can be used to form continuous wavelength or frequency with large tunable channel capacity. Therefore, distinguished discrete wavelength or frequency pulses can be generated by using localized spatial pulses via a networks communication system. Selected discrete pulses are more suitable to generate high-secured quantum codes because of the large free spectral range (FSR). Quantum codes can be generated by using a polarization control unit and a beam splitter, incorporating to the MRRs. In this work, frequency band of 10.7 MHz and 16 MHz and wavelengths of 206.9 nm, 1448 nm, 2169 nm and 2489 nm are localized and obtained which can be used for quantum codes generation applicable for secured networks communication.
机译:在这项研究中,提出了一种通过一系列微环谐振器(MRR)产生离散光脉冲的系统。可以通过MRR系统中的孤子或高斯脉冲生成混沌信号。光孤子的大带宽信号是通过在MRR中传播的输入脉冲生成的,可用于形成具有大可调信道容量的连续波长或频率。因此,可以通过网络通信系统使用局部空间脉冲来产生独特的离散波长或频率脉冲。由于大的自由光谱范围(FSR),选择的离散脉冲更适合于生成高安全性的量子代码。可以通过将偏振控制单元和分束器合并到MRR中来生成量子代码。在这项工作中,定位并获得了10.7 MHz和16 MHz的频带以及206.9 nm,1448 nm,2169 nm和2489 nm的波长,这些波长可用于生成适用于安全网络通信的量子代码。

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