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Benzocyclobutene polymer in glass multimode interference thermo-optic switch

机译:玻璃多模干涉热光开关中的苯并环丁烯聚合物

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摘要

Optical switch fabrics are integral parts of optically switched network because these devices are capable to direct input traffic to the appropriate output interface without resorting to optical-to-electrical-to-optical (OEO) conversion. This thesis is significantly devoted towards the design and simulation work of optical switch based on 2×2 multimode interference (MMI) coupler and exploiting thermo-optical properties of materials. Photosensitive BenzoCyclobutene (BCB 4024-40) polymer based coupler material was chosen due to its high thermo-optic coefficient, which offers less power consumption to induce thermo-optic effect in MMI coupler. The switching of the input signal to the desired output ports are realized by modifying refractive index at particular section of MMI coupler. Light propagation and thermal distribution through the optical switch are modeled by using a Finite Difference Beam Propagation Method (FD-BPM). In order to reduce the switching power, further analysis has been done by exploring the effect of heater’s geometrical structure. It was observed that the employment of trapezoidal (tapered) heater structure can reduce the applied switching power by 15.53% as compared to the conventional rectangular structure. This improvement was shown to take place at crosstalk value of -19 dB. Significantly, this research has successfully demonstrated the application of tapered heater electrode in reducing the switching power for thermo-optic switch application.
机译:光交换结构是光交换网络不可或缺的部分,因为这些设备能够将输入流量引导到适当的输出接口,而无需诉诸光电到光电(OEO)转换。本文致力于基于2×2多模干涉(MMI)耦合器的光开关的设计和仿真工作,并充分利用材料的热光特性。选择了基于光敏苯并环丁烯(BCB 4024-40)聚合物的耦合器材料,因为它具有很高的热光系数,在MMI耦合器中它具有较少的功耗来引发热光效应。输入信号到所需输出端口的切换是通过修改MMI耦合器特定部分的折射率来实现的。使用有限差分光束传播方法(FD-BPM)对通过光开关的光传播和热分布进行建模。为了降低开关功率,已经通过研究加热器的几何结构的影响进行了进一步的分析。观察到,与传统的矩形结构相比,采用梯形(锥形)加热器结构可以将施加的开关功率降低15.53%。已表明这种改善发生在串扰值为-19 dB的情况下。重要的是,这项研究成功地证明了锥形加热电极在降低热电开关应用的开关功率中的应用。

著录项

  • 作者

    Yaacob Maslina;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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