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High quality factor polychromatic filters based on hybrid photonic structures

机译:基于混合光子结构的高品质因子多色滤波器

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In this work, we have investigated theoretically the transmission properties of a hybrid quasi-periodic photonic system, which is a combination of a periodic H(LH)(5) and a quasi-periodic multilayer structure(QPMS)(P): H(LH)(5)(QPMS)H-P(LH)(5), where P is the repetitive number of QPMS. Simulation results showed that the number, position and the quality factor of the transmission peaks depend on the repetitive number (P) and the incident angle for both the (TE) and (TM) polarizations. Furthermore, we have studied the influence of two air layers (A) inside the previous structures at the 12th and 29th positions: H(LH)(5)A(QPMS)(2)AH(LH)(5). The results illustrate that the introducing of the defect layers in our system provides a possible mechanism for optimizing the parameters of the transmission peaks, thus the obtaining of polychromatic filters with a high quality factor (Q) and with a minimum of layers and thickness.
机译:在这项工作中,我们已经研究了混合准周期光子系统的传动特性,其是周期性H(LH)(5)和准周期性多层结构(QPMS)(P):H( LH)(5)(QPMS)HP(LH)(5),其中P是QPM的重复数量。 仿真结果表明,传输峰值的数量,位置和质量因子取决于(TE)和(TM)偏振的重复数(P)和入射角。 此外,我们已经研究了在第12和第29位的先前结构内的两个空中层(a)的影响:h(lh)(5)a(qpms)(2)ah(lh)(5)。 结果说明了我们系统中的缺陷层的引入提供了用于优化传输峰值的参数的可能机构,从而获得具有高质量因子(Q)的多色滤波器,并且具有最小的层和厚度。

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