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Photonic integrated circuits for the generation of coherent optical signals

机译:用于产生相干光信号的光子集成电路

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摘要

The demand for optical bandwidth continues to increase year on year and is being driven primarily by entertainment services and video streaming to the home. Current photonic systems are coping with this demand by increasing data rates through faster modulation techniques, spectrally efficient transmission systems and by increasing the number of modulated optical channels per fibre strand. Such photonic systems are large and power hungry due to the high number of discrete components required in their operation. Photonic integration offers excellent potential for combining otherwise discrete system components together on a single device to provide robust, power efficient and cost effective solutions. In particular, the design of optical modulators has been an area of immense interest in recent times. Not only has research been aimed at developing modulators with faster data rates, but there has also a push towards making modulators as compact as possible. Mach-Zehnder modulators (MZM) have proven to be highly successful in many optical communication applications. However, due to the relatively weak electro-optic effect on which they are based, they remain large with typical device lengths of 4 to 7 mm while requiring a travelling wave structure for high-speed operation. Nested MZMs have been extensively used in the generation of advanced modulation formats, where multi-symbol transmission can be used to increase data rates at a given modulation frequency. Such nested structures have high losses and require both complex fabrication and packaging. In recent times, it has been shown that Electro-absorption modulators (EAMs) can be used in a specific arrangement to generate Quadrature Phase Shift Keying (QPSK) modulation. EAM based QPSK modulators have increased potential for integration and can be made significantly more compact than MZM based modulators. Such modulator designs suffer from losses in excess of 40 dB, which limits their use in practical applications. The work in this thesis has focused on how these losses can be reduced by using photonic integration. In particular, the integration of multiple lasers with the modulator structure was considered as an excellent means of reducing fibre coupling losses while maximising the optical power on chip. A significant difficultly when using multiple integrated lasers in such an arrangement was to ensure coherence between the integrated lasers. The work investigated in this thesis demonstrates for the first time how optical injection locking between discrete lasers on a single photonic integrated circuit (PIC) can be used in the generation of coherent optical signals. This was done by first considering the monolithic integration of lasers and optical couplers to form an on chip optical power splitter, before then examining the behaviour of a mutually coupled system of integrated lasers. By operating the system in a highly asymmetric coupling regime, a stable phase locking region was found between the integrated lasers. It was then shown that in this stable phase locked region the optical outputs of each laser were coherent with each other and phase locked to a common master laser.
机译:对光带宽的需求逐年增长,并且主要由娱乐服务和家庭视频流推动。当前的光子系统通过更快的调制技术,高效光谱的传输系统以及通过增加每根光纤束的已调制光信道数来提高数据速率,从而满足了这一需求。由于其运行中需要大量的分立组件,因此这种光子系统很大且耗电。光子集成具有极好的潜力,可以将原本分散的系统组件组合在一个设备上,从而提供强大,省电且经济高效的解决方案。特别地,近来光调制器的设计已经成为人们极为关注的领域。研究不仅针对开发具有更快数据速率的调制器,而且还致力于使调制器尽可能紧凑。马赫曾德尔调制器(MZM)已被证明在许多光通信应用中非常成功。然而,由于它们所基于的相对较弱的电光效应,它们在典型的装置长度为4至7 mm的情况下仍保持较大尺寸,同时需要行波结构来进行高速操作。嵌套MZM已被广泛用于高级调制格式的生成中,在这种格式中,可以使用多符号传输来增加给定调制频率下的数据速率。这样的嵌套结构具有高损耗,并且需要复杂的制造和包装。在最近的时间里,已经显示出电吸收调制器(EAM)可以以特定的方式用于生成正交相移键控(QPSK)调制。基于EAM的QPSK调制器具有更高的集成潜力,并且可以使其比基于MZM的调制器更加紧凑。这种调制器设计的损耗超过40 dB,这限制了它们在实际应用中的使用。本文的工作集中在如何通过使用光子集成来减少这些损耗上。特别地,将多个激光器与调制器结构集成在一起被认为是减少光纤耦合损耗同时最大化芯片上光功率的极佳方法。当在这样的布置中使用多个集成激光器时,主要困难是确保集成激光器之间的相干性。本文研究的工作首次展示了如何在单个光子集成电路(PIC)上的离散激光器之间进行光注入锁定,以产生相干光信号。首先要考虑激光器和光耦合器的单片集成,以形成片上光功率分配器,然后再检查相互耦合的集成激光器系统的性能。通过在高度不对称的耦合状态下运行系统,可以在集成激光器之间找到一个稳定的锁相区域。然后显示出,在该稳定的锁相区域中,每个激光器的光输出彼此相干并且被锁相到共同的主激光器。

著录项

  • 作者

    Morrissey Padraic E.;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 en
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