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A novel method of developing all-optical frequency encoded memory unit exploiting nonlinear switching character of semiconductor optical amplifier

机译:利用半导体光放大器的非线性开关特性开发全光频率编码存储单元的新方法

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The very fast running optical memory and optical logic gates are the basic building blocks for any optical computing data processing system. Realization of a very fast memory-cell in the optical domain is very challenging. In the last two decades many methods of implementing all-optical flip-flops have been proposed. Most of these suffer from speed limitation because of low switching response of the active devices. In our present communication the authors propose a method of developing a frequency encoded memory unit based on the switching action of semiconductor optical amplifier (SOA). Nonlinear polarization rotation characters of SOA and ‘SOA based Mach-Zehnder Interferometer’ switch, i.e. ‘SOA-MZI’ switch, are exploited for the purpose of some switching action with least switching power (o3dBm) and high switching contrast ratio (20 dB). Here two logic states (‘0’ state and ‘1’ state) of the memory is encoded by two different frequencies, which will remain unchanged throughout the data communication irrespective of loss of light energy due to reflection, refraction, attenuation, etc. Though the SOA based switch runs with the operational speed 100 Gb/s, still due to the presence of the other optical components in the memory unit, the overall speed of the proposed system will come down to 10 Gb/s.
机译:运行速度非常快的光学存储器和光学逻辑门是任何光学计算数据处理系统的基本构建块。在光域中实现非常快速的存储单元非常具有挑战性。在过去的二十年中,已经提出了许多实现全光触发器的方法。由于有源器件的低开关响应,这些器件中的大多数都受到速度限制。在我们目前的通讯中,作者提出了一种基于半导体光放大器(SOA)的开关作用来开发频率编码存储单元的方法。利用SOA和“基于SOA的Mach-Zehnder干涉仪”开关(即“ SOA-MZI”开关)的非线性偏振旋转特性来实现某些开关动作,且开关功率最低(o3dBm),开关对比度高(20 dB) 。此处,存储器的两个逻辑状态(“ 0”状态和“ 1”状态)由两个不同的频率编码,无论由于反射,折射,衰减等导致光能损失如何,在整个数据通信中它们将保持不变。基于SOA的交换机以100 Gb / s的运行速度运行,但由于存储单元中还存在其他光学组件,因此建议系统的整体速度将降至10 Gb / s。

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