A WAVELENGTH CONVERSION BASED ON CROSS-GAIN MODULATION OF A SEMICONDUCTOR OPTICAL AMPLIFIER FIBER RING LOOP

A WAVELENGTH CONVERSION BASED ON CROSS-GAIN MODULATION OF A SEMICONDUCTOR OPTICAL AMPLIFIER FIBER RING LOOP
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基于半导体光放大器光纤环路交叉增益调制的波长转换

DOI:
10.1142/s0218863509004610
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发表时间:
2009-06
影响因子:
2.7
通讯作者:
Sergio, Granieri
Sergio, Granieri
中科院分区:
物理与天体物理4区
文献类型:
--
作者:
Tang, Yongan;Teferra, Seifu;Vlahovic, Branislav;Cheng, Cheng;Siahmakoun, Azad;Sergio, Granieri

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从理论和实验两个方面研究了半导体光放大环中的交叉增益调制(XGM)效应。在XGM的基础上,设计了一种波长转换器。实验实现了半导体光放大器波长转换,将波长为1317 nm的20 MHz正弦调制输入光信号转换为波长为1314.3 nm的输出光信号。在这种类型的波长转换中,利用可调谐滤光器来选择光纤环路输出信号的目标波长,并将该目标波长信号累加并放大为光纤环路的谐振。在光纤环路系统中引入可调谐滤光片,可以很容易地从XGM波长转换系统中获得任何想要的目标波长,这一显著的特性意味着SOA波长转换在光网络和其他领域有更广泛的应用。可以通过缩小光纤环路的长度来获得更高频率调制的XGM波长转换。
We investigate the cross-gain modulation (XGM) in a semiconductor optical amplifier (SOA) fiber ring loop theoretically and experimentally. Based on the XGM, a wavelength conversion is designed. We experimentally carry out an SOA wavelength conversion, which converts a 20 MHz sinusoidal modulated input optical signal at a wavelength of 1317 nm to an output optical signal at a wavelength of 1314.3 nm. In this type of wavelength conversion, a tunable optical filter is utilized to select the target wavelength of the output signal from the fiber ring loop, and this target wavelength signal is accumulated and amplified as the resonance of the fiber ring loop. The introduction of the tunable optical filter into the fiber ring loop system makes it very easy to obtain any desired target wavelength from this XGM wavelength conversion system; this remarkable property means that the SOA wavelength conversions have broader applications in optical networking and beyond. Higher frequency modulation XGM wavelength conversion may be obtained by scaling down the length of the fiber ring loop.
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