Leaky-Wave and DFB Characteristics of Optical Waveguide with Asymmetric Rectangular Grating Profile

K. Ho
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Abstract

Leakage and Bragg condition of optical waveguide with asymmetric rectangular grating profile are evaluated in detail by using novel and rigorous modal transmission-line theory (MTLT) based on eigenvalue problem. The optical waveguide composed by asymmetric rectangular grating occur leaky-wave stop-bands at Bragg conditions, and anomalies based on Rayleigh-Wood condition near Bragg conditions. Furthermore, DFB properties of the guiding structure at Bragg conditions are analyzed by applying longitudinal equivalent transmission-line with characteristic impedance of periodic grating. The numerical results show that filtering characteristics that maximize the reflected power of DFB waveguide are activated near Bragg conditions, in which leaky-wave stop-bands occur.
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非对称矩形光栅光波导的漏波和DFB特性
采用基于本征值问题的新型、严格的模态传输在线理论(MTLT)对非对称矩形光栅光波导的泄漏和Bragg条件进行了详细的计算。非对称矩形光栅构成的光波导在Bragg条件下出现漏波阻带,在Bragg条件附近出现基于Rayleigh-Wood条件的异常。此外,采用具有周期光栅特征阻抗的纵向等效在线传输方法,分析了Bragg条件下导向结构的DFB特性。数值结果表明,DFB波导的滤波特性在Bragg条件附近被激活,在Bragg条件下存在漏波阻带。
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