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Study of the polarization sensitivity of asymmetric directional couplers for optical bandpass filter and the TE/TM mode splitter application

机译:光学带通滤波器和TE / TM模式分离器应用的非对称定向耦合器的极化敏感性研究

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Wavelength selective optical bandpass filter is a key component in the multi-wavelength transmission system. It has been demonstrated that such a filter can be made using two vertically coupled asymmetric waveguide couplers. To obtain a narrow filter bandwidth, a large asymmetry between the two waveguides is required. However, this causes the geometry induced birefringence and results in different coupling wavelength for the TE and TM modes. Due to the random polarization characteristic of the optic fiber, it is required that the bandpass filter at the receiver end be polarization insensitive in a practical communication system. Due to the inherent birefringent property of the optical waveguide, it remains a challenge to obtain a polarization insensitive filter using two coupled asymmetric rectangular waveguides. In the paper, the authors study the dependence of the TE and TM central wavelengths on the device parameters and explore the possibility of achieving a polarization insensitive filter based on the birefringent compensation.
机译:波长选择光带通滤波器是多波长传输系统中的关键组件。已经证明,可以使用两个垂直耦合的不对称波导耦合器进行这种过滤器。为了获得窄的过滤器带宽,需要两个波导之间的大的不对称性。然而,这导致几何形状诱导的双折射并导致TE和TM模式的不同耦合波长。由于光纤的随机偏振特性,因此需要在接收器结束处的带通滤波器在实际通信系统中是极化不敏感的。由于光波导的固有双折射性能,使用两个耦合的不对称矩形波导来获得极化不敏感滤波器仍然是一个挑战。本文研究了TE和TM中心波长对器件参数的依赖性,并探讨了基于双折射补偿实现偏振不敏感滤波器的可能性。

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