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Very compact ring resonators with conventional waveguides, total internal reflection mirrors and etched beam splitters.

机译:具有传统波导,全内反射镜和蚀刻分束器的非常紧凑的环形谐振器。

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摘要

Ring resonators have been received much attentions because they can provide a wide range of optical signal processing functions as stand-alone devices or building blocks of more complicated photonic devices. Additionally, their possibility of compact size enables high levels of photonic integrations. For the realization of complex photonic integrated circuits they should be integrated with other active and passive components. Most of these components are based on weakly confined waveguides, which can be engineered to have low propagation loss and high optical gain. However, using such waveguides it is very difficult to reduce ring resonator size due to lack of compact low radiation loss bends and short couplers. Possible solutions are total internal reflection mirrors for abrupt bends and etched beam splitters for submicron couplers.;This dissertation reports on the experimental study and theoretical analysis of total internal reflection mirrors, etched beam splitter and novel compact ring resonators based on these components. Total internal reflection mirrors were demonstrated with loss as low as 0.4 dB. Polymer-filled etched beam splitters were also fabricated that give power transmission in 10% to 30% range when angles of incidence are around 30° and gap widths are from 0.3 to 0.5 mum. Using these components the bandstop and add/drop filters based on single ring resonator with circumference of down to 55 mum were first designed and demonstrated in GaAs/AlGaAs platform. Also the compact filters with integrated semiconductor optical amplifiers inside the ring resonator were designed and fabricated in InP/InGaAsP material system. In this platform the bandstop filters with circumference as low as 45 mum corresponding to a free spectral range in excess of 14 nm were demonstrated at 1.55 mum. These filters occupy an area of about 20 mum x 20 mum and have tunable transfer functions with tuning currents less than 2.5 mA.
机译:环形谐振器作为独立设备或更复杂的光子设备的构建基块,可以提供广泛的光信号处理功能,因此备受关注。另外,它们具有紧凑尺寸的可能性实现了高水平的光子集成。为了实现复杂的光子集成电路,应将它们与其他有源和无源组件集成在一起。这些组件中的大多数都基于弱约束波导,可以设计为具有低传播损耗和高光学增益的波导。然而,由于缺乏紧凑的低辐射损耗弯曲和短耦合器,使用这样的波导很难减小环形谐振器的尺寸。可能的解决方案是用于急剧弯曲的全内反射镜和用于亚微米耦合器的蚀刻分束器。本论文对全内反射镜,蚀刻分束器和基于这些部件的新型紧凑环形谐振器的实验研究和理论分析进行了报道。演示了全内反射镜,损耗低至0.4 dB。还制造了填充聚合物的蚀刻分束器,当入射角约为30°且间隙宽度为0.3至0.5微米时,功率传输范围为10%至30%。使用这些组件,首先在GaAs / AlGaAs平台上设计并演示了基于单环形谐振器的带阻滤波器和分插滤波器,其周长低至55 mm。此外,在InP / InGaAsP材料系统中设计和制造了环形谐振器内部集成了半导体光放大器的紧凑型滤波器。在该平台上,在1.55μm处演示了周长低至45μm(对应于超过14 nm的自由光谱范围)的带阻滤波器。这些滤波器占地约20毫米x 20毫米,并具有可调的传递函数,调谐电流小于2.5 mA。

著录项

  • 作者

    Kim, Byungchae.;

  • 作者单位

    University of California, Santa Barbara.;

  • 授予单位 University of California, Santa Barbara.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 D.Eng.
  • 年度 2010
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:59

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