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Method of implementing frequency encoded multiplexer and demultiplexer systems using nonlinear semiconductor optical amplifiers

机译:使用非线性半导体光放大器实现频率编码复用器和解复用器系统的方法

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Multiplexing and demultiplexing are the essential parts of any communication network. In case of optical multiplexing and demultiplexing the coding of the data as well as the coding of control signals are most important issues. Many encoding/decoding mechanisms have already been developed in optical communication technology. Recently frequency encoding technique has drawn some special interest to the scientific communities. The advantage of frequency encoding technique over any other techniques is that as the frequency is fundamental character of any signal so it remains unaltered in reflection, refraction, absorption, etc. during transmission of the signal and therefore the system will execute the operation with reliability. On the other hand, the switching speed of semiconductor optical amplifiers (SOA) is sufficiently high with property of best on/off contrast ratio. In our present communication we propose a method of implementing a ‘4-to-1’ multiplexer (MUX) and a ‘1-to-4’ demultiplexer (DEMUX) exploiting the switching character of nonlinear SOA with the use of frequency encoded control signals. To implement the ‘4-to-1’ MUX and ‘1-to-4’ DEMUX system, the frequency selection by multiquantum well (MQW)-grating filter-based SOA has been used for frequency routing purpose. At the same time, the polarization rotation character of SOA has also been exploited to get the desired purpose. Here the fast switching action of SOA with reliable frequency encoded control input signals, it is possible to achieve a faithful MUX/DEMUX service at tera-Hz operational speed.
机译:复用和解复用是任何通信网络的基本组成部分。在光复用和解复用的情况下,数据的编码以及控制信号的编码是最重要的问题。在光通信技术中已经开发了许多编码/解码机制。最近,频率编码技术已经引起了科学界的特别关注。频率编码技术相对于任何其他技术的优势在于,由于频率是任何信号的基本特征,因此在信号传输期间它在反射,折射,吸收等方面保持不变,因此系统将可靠地执行操作。另一方面,半导体光放大器(SOA)的开关速度具有足够高的开/关对比度的特性。在我们当前的通信中,我们提出了一种利用频率编码的控制信号来利用非线性SOA的切换特性来实现“ 4-to-1”多路复用器(MUX)和“ 1-to-4”多路复用器(DEMUX)的方法。为了实现“ 4对1” MUX和“ 1对4” DEMUX系统,基于多量子阱(MQW)光栅滤波器的SOA的频率选择已用于频率路由。同时,也利用SOA的极化旋转特性来达到预期目的。在此,通过可靠的频率编码控制输入信号对SOA进行快速切换,可以以太赫兹的运行速度实现忠实的MUX / DEMUX服务。

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