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MRR quantum dense coding for optical wireless communication system using decimal convertor

机译:使用十进制转换器的光无线通信系统的MRR量子密集编码

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In this study, simply two systems consist of series of microring resonators (MRRs) and a add/drop filter are used to generate a large bandwidth signal as localized multi wavelength, applicable for quantum dense coding (QDC) and continuous variable encoding generation using incorporated system. This technique uses the Kerr nonlinear type of light in the MRR to generate multi wavelength for desired application especially in internet security and quantum network cryptography. Quantum dense encoding can be perform by output signals of selected wavelengths which are incorporated to a polarization control system in which dark and bright optical soliton pulses with different time slot are generated. Generated dark and bright optical pulses can be converted into digital logic quantum codes using a decimal convertor system in which transmission of secured information are perform via a wireless network communication system. Results show that multi soliton wavelength, ranged from 1.55µm to 1.56µm with FWHM and FSR of 10 pm and 600 pm can be generated respectively.
机译:在这项研究中,仅使用两个系统,这些系统由一系列微环谐振器(MRR)和一个分插滤波器组成,用于生成作为局部多波长的大带宽信号,适用于量子密集型编码(QDC)和使用合并生成的连续变量编码系统。该技术在MRR中使用Kerr非线性类型的光来生成所需应用的多波长,特别是在Internet安全和量子网络密码学中。可以通过将选定波长的输出信号合并到偏振控制系统中来执行量子密集编码,在该偏振控制系统中会生成具有不同时隙的暗和亮光孤子脉冲。可以使用十进制转换器系统将生成的暗光脉冲和亮光脉冲转换为数字逻辑量子代码,其中通过无线网络通信系统执行安全信息的传输。结果表明,在FWHM和FSR分别为10 pm和600 pm的情况下,可以产生范围为1.55µm至1.56µm的多孤子波长。

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