通过在质心处叠加横向模态分析手性板谐振器多边形阵列的复合响应

A. Muntaser, Monish R. Chatterjee
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引用次数: 1

摘要

在本文中,我们设计了手性板谐振器阵列(法布里-珀罗型(FP)),它们呈多边形排列,并由入射在阵列板上的线性p偏振平面波照射。每个这样的板分析使用标准手性板共振分析最近发展[1];考虑板坯厚度和衬底放置条件作为(单色)模式频率的函数,计算手性系数变时左右圆偏振(RCP和LCP)模式对应的模式光谱。在多边形阵列配置中,增加光电探测器(pd)将光转换为光电流(与光强度相关);来自pd的强度叠加在一个空间点上(选择作为多边形的质心)。因此,在这种方法中,在质心处产生净强度,以响应正常照明的多边形阵列。对阵列设计进行了数值分析,并对其总体频率和参数特性进行了评估。在(1)匹配的谐振器(具有相同的材料参数,包括厚度(d)和手性系数(𝜅))下,确定M块板的光谱和结果强度对-à-vis模态频率的行为,其最大透射率(给出最大叠加强度)由M乘以每个单独的强度;(2)扩展为d和K的不匹配谐振器,使得整体叠加阵列强度方向图变得可调可控,从而产生所需或可实现的宽带或窄带模态响应。对两种多边形阵列的复合性能进行了详细的研究,并对结果进行了讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the composite response of a polygonal array of chiral slab resonators via superposition of transverse modes at the centroid
In this paper, we design arrays of chiral slab resonators (Fabry-Perot-type (FP)) aligned polygonally and illuminated by a linear, p-polarized plane wave incident normally on the array slabs. Each such slab is analyzed using standard chiral slab resonance analyses developed recently [1]; evaluating the corresponding mode spectra for the right- and left-circular polarization ((RCP and LCP) modes for variable chirality coefficients, considering the slab thickness and substrate placement conditions as a function of the (monochromatic) mode frequency. In the polygonal array configuration, photodetectors (PDs) are added to convert the light into photocurrents (related to optical intensity); the intensities from the PDs are superposed at a single spatial point (chosen to be the centroid of the polygon). Hence, in this approach, a net intensity is generated at the centroid in response to a normally illuminated polygonal array. The array design is numerically analyzed, and the overall frequency and parametric properties evaluated. The spectral and resulting intensity behavior vis-à-vis mode frequencies for M slabs is determined under (1) matched resonator (with identical material parameters including thickness (d) and chirality coefficient (𝜅̃)) illumination with maximal transmission (which gives maximum superposed intensity) given by M times each individual intensity; and (2) unmatched resonators with a spread of d and K, such that the overall superposed array intensity pattern becomes adjustable and controllable, resulting in wideband or narrowband modal responses as desired or attainable by design. Both types of composite behavior for the two types of polygonal arrays are examined in detail and results discussed.
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