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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Multiwavelength DFB laser arrays with integrated combiner and optical amplifier for WDM optical networks
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Multiwavelength DFB laser arrays with integrated combiner and optical amplifier for WDM optical networks

机译:集成了组合器和光放大器的多波长DFB激光器阵列,用于WDM光网络

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In this paper, we describe the design, fabrication and performance of multiwavelength DFB laser arrays with integrated combiner and optical amplifier built for wavelength-division-multiplexed (WDM) optical networks. The goal is to reduce the per-wavelength transmitter cost in both initial procurement and subsequent operation. Using photonic integration, we have addressed and resolved several important issues related to laser arrays such as wavelength accuracy, output power, high-speed modulation and optical packaging. State of the art results have been obtained. By the use of wavelength redundancy and proximity effect, wavelength deviations of /spl plusmn/0.2 nm or less from the designated eight-wavelength comb have been achieved with high yield. Simultaneous operation of ten wavelengths has also been demonstrated. In spite of the inherent splitting loss of 13 dB, high-output powers of about -13 and 0.5 dBm per wavelength have been measured, under simultaneous operation, into a single-mode fiber (SMF) without and with on-chip optical amplification, respectively. The DFB laser has a 3-dB bandwidth of 9 GHz. A 2.5-Gb/s (OC-48) error-free transmission through 120 km conventional SMF has been demonstrated under single channel operation. The electrical crosstalk from neighboring channels cause negligible degradation to the eye diagram and the bit-error-rate (BER) curve at a bit rate of 2.5 Gb/s. The optical crosstalk due to four-wave mixing and cross-gain modulation (XGM) of the semiconductor optical amplifier (SOA) is also characterized. The impact of this integrated laser array on WDM optical networks is assessed in the conclusion.
机译:在本文中,我们描述了为波分复用(WDM)光网络构建的,集成了组合器和光放大器的多波长DFB激光器阵列的设计,制造和性能。目标是在初始采购和后续操作中均降低每波长发射机的成本。使用光子集成,我们已经解决并解决了与激光阵列有关的几个重要问题,例如波长精度,输出功率,高速调制和光学封装。已经获得了最新技术成果。通过使用波长冗余和邻近效应,与指定的八波长梳的波长偏差为/ spl plusmn / 0.2 nm或更小。还证明了十个波长的同时操作。尽管固有​​的分流损耗为13 dB,但在同时运行的情况下,在不使用和带有片上光放大的情况下,已测量出单波长光纤(SMF)的高输出功率/波长约为-13和0.5 dBm,分别。 DFB激光器的3 dB带宽为9 GHz。在单通道操作下,已经证明了通过120 km常规SMF的2.5 Gb / s(OC-48)无错误传输。来自相邻通道的电串扰以2.5 Gb / s的比特率对眼图和误码率(BER)曲线的影响可忽略不计。还描述了由于半导体光放大器(SOA)的四波混频和交叉增益调制(XGM)而引起的光串扰。结论中评估了这种集成激光器阵列对WDM光网络的影响。

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