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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Multiwavelength modelocked semiconductor lasers for photonic access network applications
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Multiwavelength modelocked semiconductor lasers for photonic access network applications

机译:用于光子接入网络应用的多波长多模对接半导体激光器

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摘要

High performance, inexpensive light sources are needed for the advancement of wavelength division multiplexed (WDM) photonic access networks. In this paper, the unique features of multiwavelength modelocked semiconductor lasers are demonstrated with an emphasis on possible integration into access networks. An evaluation of multiwavelength passive, active, and hybrid modelocking reveals that hybrid modelocking is optimum for the suppression of mode partition noise as well as coherence tailoring in multiwavelength lasers. Low-distortion propagation of 10 channeltimes5 GHz multiwavelength pulses through multimode fiber is achieved. Intracavity gain flattening enables the simultaneous generation of 6 GHz pulse trains into 168 parallel wavelength channels for a 1 THz aggregate pulse rate from a single laser source. This work conveys the potential for semiconductor laser modelocking to produce multiple telecommunications wavelengths for data transmission and auxiliary functions in photonic networking
机译:需要高性能,廉价的光源来促进波分复用(WDM)光子访问网络的发展。在本文中,展示了多波长多模对接半导体激光器的独特功能,重点是可能集成到接入网络中。对多波长无源,有源和混合模型对接的评估表明,混合模型对接是抑制模式分配噪声以及在多波长激光器中进行相干修整的最佳选择。通过多模光纤实现了10个信道时间5 GHz多波长脉冲的低失真传播。腔内增益平坦化使得能够从单个激光源同时生成6 GHz脉冲序列到168个并行波长通道中,总脉冲率为1 THz。这项工作为半导体激光模型对接产生光子网络中数据传输和辅助功能的多种电信波长提供了潜力

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