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Use of photonic quantum well as tunable defect in multilayer narrowband reflection-and-transmission filter

机译:在多层窄带反射和透射滤光片中使用光子量子阱作为可调谐缺陷

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摘要

By using a photonic quantum well (PQW) as a tunable defect layer, a theoretical analysis on the optical properties in a multilayer narrowband reflection-and-transmission filter can be given. It is found that the resonant peaks in the reflection and transmission spectra are shifted to shorter wavelengths as the number of periods in the PQW increases. The shifting feature is more salient if the QW is deeper, that is, the refractive index contrast in the constituents of the PQW is increased. This novel design provides an alternative for achieving a tunable filter instead of using the usual electrooptical defect.
机译:通过使用光子量子阱(PQW)作为可调缺陷层,可以对多层窄带反射和透射滤光器中的光学特性进行理论分析。可以发现,随着PQW中周期数的增加,反射光谱和透射光谱中的共振峰移至较短的波长。如果QW较深,则位移特征会更加明显,也就是说,PQW的成分中的折射率对比度会增加。这种新颖的设计提供了一种实现可调滤波器的替代方法,而不是使用通常的电光缺陷。

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