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Multichannel optical frequency generation using quantum confined Stark effect tuned lasers for dense wavelength division multiplex applications.

机译:使用量子受限斯塔克效应调谐激光器的多通道光频率生成,适用于密集波分复用应用。

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摘要

In future dense wavelength division multiplex (DWDM) systems, highly stable sources will be required. This thesis describes a 1.55 mum multichannel source for DWDM using InGaAsP/InP multiple quantum well (MQW) quantum confined Stark effect (QCSE) tuning and an investigation of the use of InGaAsP/InP MQW QCSE frequency modulated (FM) lasers as potentially compact and low cost optical comb generators for DWDM applications. Firstly, using quaternary InGaAsP MQW systems, large area and low parasitic capacitance fast QCSE air bridged modulators have been designed and demonstrated which could be used in a QCSE FM laser comb generator. The reverse breakdown voltage was over -20 V with a few nA leakage current. The refractive index change was measured as 1.25% at 40 kV/cm electric field. The 3 dB cut off frequency of the air-bridged QCSE modulator was greater than 6 GHz. Secondly, a multichannel source which has a frequency that can be selected from a wide range of values and which uses an InGaAsP/InP MQW QCSE tuned external cavity structure has been demonstrated. The InGaAsP/InP gain laser is coupled to a MQW QCSE modulator including a distributed Bragg reflector (DBR) mirror. The selectable channel bandwidth was 32 nm with 25 dB side mode suppression which can be reduced further by adjusting the external cavity condition, 1 dB gain flatness over the range, and 140 GHz channel spacing which can be changed to suit the 100 GHz ITU or other WDM grids by using a gain laser of an appropriate length. Thirdly, the first demonstration of comb line generation using InGaAsP MQW QCSE tuned semiconductor FM laser operation is described. For this demonstration a novel external cavity structure was used involving fast InGaAsP/InP MQW QCSE optical modulators and an anti-reflection coated gain laser. 20 significant comb lines can be achieved before multimode operation due to modulation frequency induced instability occurs. Finally, dense wavelength division multiplex systems employing a semiconductor FM laser comb generator and injection locked techniques are discussed.
机译:在未来的密集波分复用(DWDM)系统中,将需要高度稳定的光源。本文介绍了使用InGaAsP / InP多量子阱(MQW)量子受限斯塔克效应(QCSE)调谐的1.55微米DWDM多通道源,以及对InGaAsP / InP MQW QCSE调频(FM)激光器的使用的研究,该激光器具有潜在的紧凑性和可靠性。用于DWDM应用的低成本光学梳状发生器。首先,使用四元InGaAsP MQW系统,设计并演示了可用于QCSE FM激光梳状发生器的大面积,低寄生电容快速QCSE空气桥接调制器。反向击穿电压超过-20 V,漏电流为nA。在40 kV / cm电场下测得的折射率变化为1.25%。空气桥接QCSE调制器的3 dB截止频率大于6 GHz。其次,已经证明了具有可以从宽范围的值中选择的频率并且使用InGaAsP / InP MQW QCSE调谐的外腔结构的多通道源。 InGaAsP / InP增益激光器与包括分布式布拉格反射器(DBR)镜的MQW QCSE调制器耦合。可选的信道带宽为32 nm,具有25 dB的旁模抑制,可以通过调整外部空腔条件来进一步减小该噪声,在该范围内增益平坦度为1 dB,并且140 GHz的信道间隔可以更改以适合100 GHz ITU或其他WDM通过使用适当长度的增益激光器来栅格化。第三,描述了使用InGaAsP MQW QCSE调谐半导体FM激光操作产生梳线的第一个演示。对于此演示,使用了一种新颖的外腔结构,其中包括快速InGaAsP / InP MQW QCSE光学调制器和抗反射涂层增益激光器。由于调制频率引起的不稳定性,在多模操作之前可以实现20条有效的梳状线。最后,讨论了采用半导体FM激光梳状发生器和注入锁定技术的密集波分复用系统。

著录项

  • 作者

    Song, Ju Bin.;

  • 作者单位

    University of London, University College London (United Kingdom).;

  • 授予单位 University of London, University College London (United Kingdom).;
  • 学科 Optics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 281 p.
  • 总页数 281
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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