首页> 外文会议>Conference on Optical Devices for Fiber Communication II 6-8 November 2000 Boston, USA >An Analysis of the Effect of Gordon-Haus Jitter on Non-Linear Optical Loop Mirror (NOLN) Demultiplexing
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An Analysis of the Effect of Gordon-Haus Jitter on Non-Linear Optical Loop Mirror (NOLN) Demultiplexing

机译:戈登-豪斯抖动对非线性光学环路镜(NOLN)解复用的影响分析

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One of the major problems associated with high-speed optical time division multiplexed (OTDM) soliton transmission systems is the timing jitter error associated with individual soliton pulses. The two physical effects that cause soliton jitters are the amplified spontaneous emission (ASE) noise in in-line optical amplifiers and soliton interaction. While soliton interaction is negligible when the duty cycle of transmitted pulses is small enough, the root-mean-square (rms) soliton jitter due to cumlminated ASE noise is a fundamental factor that limits the bit-rate distance product in high-speed long-haul data transmission systems. Soliton jitter is detrimental to all-optical time division demultiplexing as it would manifest itself into a relative intensity noise in the data recovery process at the optical receiver. This paper investigates the possibility of minimising the ASE-induced soliton jitter by changing the spacing between in-line optical amplifiers. It is found that the rms soliton jitter decreases with the amplifier spacing and the minimum soliton jitter can be attained in the case of distributed amplification. These results have significant implications to all-optical time division demultiplexing in the sense of taking into account the amplifier spacing in the process of optimising system parameters to achieve minimum power penalty of the all-optical demultiplexer. The optical demultiplexer used in the analysis is a non-linear loop mirror (NOLM).
机译:与高速光时分多路复用(OTDM)孤子传输系统相关的主要问题之一是与各个孤子脉冲相关的定时抖动误差。引起孤子抖动的两个物理效应是在线光学放大器中的放大的自发发射(ASE)噪声和孤子相互作用。当发射脉冲的占空比足够小时,孤子相互作用可以忽略不计,但由于ASE噪声累积导致的均方根(rms)孤子抖动是一个基本因素,它限制了高速长脉冲信号的比特率距离乘积。运输数据传输系统。孤子抖动不利于全光时分多路分解,因为它会在光接收器的数据恢复过程中表现为相对强度的噪声。本文研究了通过改变在线光学放大器之间的间距来最小化ASE引起的孤子抖动的可能性。已经发现,均方根孤子抖动随放大器间距的增加而减小,在分布式放大的情况下,可以获得最小的孤子抖动。从在优化系统参数以实现全光解复用器的最小功率损失的过程中考虑放大器间距的意义上讲,这些结果对全光时分多路分解具有重要意义。分析中使用的光学多路分解器是非线性环形镜(NOLM)。

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