首页> 外文会议>Conference on Integrated Optics Devices Ⅴ Jan 23-25, 2001, San Jose, USA >Modeling and characterization of guided wave optical sensor devices
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Modeling and characterization of guided wave optical sensor devices

机译:导波光学传感器设备的建模和表征

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Guided wave optical sensors have had a major impact upon measurement and instrumentation, and are composed of a considerable variety of both active and passive optoelectronic components. In their design and characterization, a wide range of photonic guided-wave devices may be modelled by using several rigorous numerical approaches based on the finite element method (FEM). A review on the applications of one such numerical approach, a combination of the FEM and the least squares boundary residual (LSBR) method is presented. Rigorous analysis a number of photonic devices, which may incorporate several butt-coupled uniform waveguide sections, such as optical modulators, switches, filters, polarisers, power splitters, optical bends, and Bragg gratings, is demonstrated in this paper, as a basis for current and future sensor systems.
机译:导波光学传感器对测量和仪器产生了重大影响,并且由相当数量的有源和无源光电组件组成。在其设计和表征中,可以通过使用基于有限元方法(FEM)的几种严格的数值方法来对各种光子导波器件进行建模。本文介绍了一种有限元方法和最小二乘边界残差(LSBR)方法相结合的数值方法的应用。本文对许多光子设备进行了严格的分析,其中可能包含多个对接耦合的均匀波导部分,例如光调制器,开关,滤波器,偏振器,功率分配器,光弯曲和布拉格光栅,以此作为基础。当前和将来的传感器系统。

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