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首页> 外文期刊>Results in Physics >Dual wavelength optical duobinary modulation using GaAs–AlGaAs microring resonator
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Dual wavelength optical duobinary modulation using GaAs–AlGaAs microring resonator

机译:使用GaAs-AlGaAs微环谐振器的双波长光学双二进制调制

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摘要

In this article, optical duobinary modulation technique has been used for modulating the dual-wavelength optical signal generated by the microring resonator system. The optical signals are de-multiplexed to two different optical signals with center wavelength of 1540 and 1545?nm afterward, these are modulated and transmitted over an optical fiber communication system, where the high performance of the transmitted signals is obtained. The NRZ binary signals are used to modulate the optical signals. The high-quality factor and performance of the system has been investigated by applying an optimization through the system parameters, where significant improvement could be obtained and highest quality factor of 32.871 shows the successful transmission. The second wavelength of the dual-wavelength has undergone the same modulation technique and has experienced the optical transmission after the system optimization has been performed, where the quality factor for the received optical signal at 1545?nm center wavelength is 39.282. These results show the introduced modulation technique is suitable to apply for the optical signals generated by the microring resonators.
机译:在本文中,光学双二进制调制技术已用于调制由微环谐振器系统生成的双波长光信号。然后,将光信号多路分解为中心波长为1540和1545?nm的两个不同的光信号,并在光纤通信系统上进行调制和传输,从而获得高性能的传输信号。 NRZ二进制信号用于调制光信号。通过对系统参数进行优化,研究了系统的高品质因数和性能,可以得到显着改善,最高品质因数32.871表明传输成功。双波长的第二个波长已经采用了相同的调制技术,并且在执行系统优化后经历了光传输,其中在1545?nm中心波长处接收到的光信号的质量因数为39.282。这些结果表明,引入的调制技术适用于应用由微环谐振器产生的光信号。

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