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首页> 外文期刊>Journal of Infrared, Millimeter and Terahertz Waves >Effect of Ripple Taper on Coupling Modes in a Coaxial Bragg Structure
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Effect of Ripple Taper on Coupling Modes in a Coaxial Bragg Structure

机译:波纹锥度对同轴布拉格结构中耦合模式的影响

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Based on the mode-coupling method, numerical analysis is presented to demonstrate the influence of ripple taper on coupling modes on the frequency response in a coaxial Bragg structure. Results show that the interval between the band-gaps of the competing mode and the desired working mode is narrowed by use of a positive taper, but is expanded if a negative taper is employed, and the influence of the negative taper is more obviously advantage than the positive taper. The residual side-lobes of the frequency response on coupling modes can be effectively suppressed by employing the windowingfunction technique. These characteristics of a tapered coaxial Bragg structure are favorable to improvement of the performance as a reflector or a filter in its application, also favorable to the mode selectivity and further weaken the excitation of unwanted spurious modes.
机译:基于模式耦合方法,进行了数值分析,以证明波纹锥度对同轴布拉格结构中耦合模式对频率响应的影响。结果表明,通过使用正锥度,竞争模式的带隙与所需工作模式之间的间隔变窄,但是如果使用负锥度,则间隙区域的间隔会扩大,并且负锥度的影响比正锥度。通过采用开窗函数技术,可以有效地抑制耦合模式下频率响应的残留旁瓣。锥形同轴布拉格结构的这些特性有利于改进其应用中作为反射器或滤光片的性能,也有利于模式选择性,并进一步减弱了对不希望的寄生模式的激励。

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