首页> 外文会议>Signal Propagation on Interconnects, 2009. SPI '09 >Signal integrity of femtosecond pulses patterns in a 500Gb/s all-optical demultiplexer for otdm interconnections by using nonlinearities in semiconductor optical amplifiers
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Signal integrity of femtosecond pulses patterns in a 500Gb/s all-optical demultiplexer for otdm interconnections by using nonlinearities in semiconductor optical amplifiers

机译:通过使用半导体光放大器中的非线性特性,在用于otdm互连的500Gb / s全光解复用器中的飞秒脉冲模式的信号完整性

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This paper numerically investigates the problematic of preserving the signal integrity in a board equipped with Semiconductor Optical Amplifiers (SOAs), optically interconnected to perform optical signal demultiplexing at several hundreds of Gb/s. First, the extreme features of the nonlinear optical gain saturation dynamics in SOAs inputted with dense femtosecond optical pulses signals have been derived by means of a proper theoretical model, suitable for calculating - in a self-consistent way - the quasi-Fermi levels and the carriers temperatures from the instantaneous values of the carrier density and the energy densities in both valence and conduction bands. Then, the results obtained have been used to investigate the potential performances of an interferometric SOA-based pump-probe scheme working as an all-optical ultrafast demultiplexing structure. Simulations have revealed how, with a proper management of the SOAs nonlinear optical gain dynamics, this architecture could extract any 100 Gb/s channel from a 500 Gb/s pattern, with a high value of its extinction ratio, a negligible amount of optical losses, and no degradation due to the SOA optical gain pattern dependence.
机译:本文以数字方式研究了在配备有半导体光放大器(SOA)的板上保留信号完整性的问题,该板上光互连以数百Gb / s的速度进行光信号多路分解。首先,通过适当的理论模型推导了密集飞秒光脉冲信号输入的SOA中非线性光学增益饱和动力学的极端特征,该理论模型适合以自洽的方式计算准费米能级和从价带和导带中的载流子密度和能量密度的瞬时值确定载流子温度。然后,获得的结果已用于研究作为全光学超快解复用结构的基于干涉SOA的泵浦探针方案的潜在性能。仿真表明,通过适当管理SOA非线性光学增益动态特性,该体系结构可以从500 Gb / s模式中提取任何100 Gb / s通道,且消光比值高,光损耗可忽略不计,并且不会因SOA光学增益模式的依赖性而降低性能。

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