利用千兆赫电吸收调制器实现WDM到TDM信号转换的实验研究

SPIE OPTO Pub Date : 2016-03-21 DOI:10.1117/12.2214219
Tianxin Yang, P. Gao, Chunfeng Ge, Zhaoying Wang
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引用次数: 0

摘要

提出了一种利用电吸收调制器(EAM)的交叉吸收效应,实现波分复用(WDM)信号到时分复用(TDM)信号高数据速率转换的方法。设计并构建了一个多波长光源作为一组波分复用载波,这些载波作为待转换的波分复用脉冲信号进行门控。波分复用信号的频谱覆盖了40nm以上,证明了整个C+L波段的波长可以转换成一个单一的波长,在系统的输出端形成波分复用信号。输入到EAM器件的WDM信号的脉宽约为2.586 ns。转换后的信噪比约为7dB。在全光波长转换实验中表明,EAM具有较强的抗噪性。观察到,短波长信号在EAM器件中向C波段中心探测波长的转换效率高于长波长信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental studies on WDM to TDM signal conversions using gigahertz electro-absorption modulators
A method of optical signal conversions at high data rates from wavelength division multiplexing (WDM) signals to time division multiplexing (TDM) signals is demonstrated and studied experimentally using the cross-absorption effect of electro-absorption modulator (EAM). A multi-wavelength light source is designed and built up as a set of WDM carriers which are gated as the WDM pulse signals to be converted. The spectrum of the WDM signals covers more than 40 nm so that is proved that the wavelengths in the whole C+L band can be converted to a single wavelength at which the TDM signal is formed at the output of the system. The pulse width of the WDM signals which is input into the EAM device is about 2.586 ns. And the signal to noise ratio after conversion is about 7dB. It shows that EAM has strong noise immunity in the all-optical wavelength conversion experiment. And it is observed that the conversion of signals at the short wavelength shows higher conversion efficiency than the long-wavelength signals in the EAM device to a probe wavelength at the center of C band.
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