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WELCOME TO THE MEDITERRANEAN JOURNAL OF COMPUTERS AND NETWORKS

机译:欢迎来到地中海计算机网络杂志

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The third paper by Amaya demonstrate the influence of a high power continuous wave (CW) injection, as a holding beam (HB), into an SOA at the gain transparency wavelength, on the device's static and dynamic performances over a wide range of signal wavelength. Our experiments show that the holding beam injection into the SOA increases its 3-dB saturation output power and decreases its dynamic gain recovery time over a broadband of optical signal wavelength, without sacrificing its non-saturated gain neither changing its noise figure (NF). In addition, we demonstrate that the holding beam injection is a helpful technique for reducing the inter-channel crosstalk induced between signals due to the cross-gain modulation (XGM) effects in the SOA. By bit error rate (BER) measurements, we show that the crosstalk penalties imposed between two optical signals, modulated at 2.5 Gb/s and traveling through the SOA, can be considerably reduced by a holding beam power (of 19 dBm) injection at the gain transparency wavelength (1480 ran) inside the SOA cavity in counter-propagating direction.
机译:Amaya的第三篇论文展示了在增益透明波长下,将高功率连续波(CW)作为保持光束(HB)注入SOA对器件在宽信号波长范围内的静态和动态性能的影响。我们的实验表明,将保持光束注入SOA可以增加其3-dB饱和输出功率,并在整个光信号波长范围内减少其动态增益恢复时间,而不会牺牲其非饱和增益,而不会改变其噪声系数(NF)。此外,我们证明了保持光束注入是一种有用的技术,可减少由于SOA中的交叉增益调制(XGM)效应而在信号之间引起的通道间串扰。通过误码率(BER)测量,我们表明,通过以2.5 Gb / s调制并通过SOA传输的两个光信号之间施加的串扰损失,可以通过在19 dBm处注入保持光束功率(19 dBm)来大大降低。在反向传播方向上,在SOA腔内获得透明波长(1480纳米)。

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