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Analytical design of flat-top transmission filters composed of several resonant structures

机译:由多个谐振结构组成的平顶透射滤波器的分析设计

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Resonant properties of composite structures consisting of several identical resonant structures (e.g. multilayer thin-film structures or guided-mode resonance gratings) separated by phase-shift layers are investigated theoretically. Using the scattering matrix formalism, we analytically demonstrate that, at properly chosen thicknesses of the phase-shift layers, the composite structures comprising two or four resonant diffractive structures with a Lorentzian transmittance profile optically implement the Butterworth filters of the order two or three, respectively, and enable achieving flat-top transmission spectra with steep slopes and low sidebands. In addition, we show that the composite structures consisting of three or four second-order Butterworth filters can accurately approximate the fourth- or fifth-order Butterworth filters, respectively. The presented theoretical results are confirmed by rigorous numerical simulations of composite structures consisting of the so-called W-structures (simple three-layer resonant structures comprising a high-index core layer and two low-index cladding layers in a high-index dielectric environment). The simulation results confirm the formation of flat-top transmittance peaks, the shape of which fully agrees with the derived theoretical description. Moreover, we demonstrate an exceptionally simple mechanism of controlling the transmittance peak width, which consists in changing the thicknesses of the cladding layers of the initial W-structure and enables generating flat-top transmission peaks with a significantly subnanometer width. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing
机译:从理论上研究了由相移层隔开的几种相同谐振结构(例如多层薄膜结构或导模谐振光栅)组成的复合结构的谐振特性。利用散射矩阵形式,我们分析地证明了,在适当选择的相移层厚度下,由两个或四个具有洛伦兹透射率分布的共振衍射结构组成的复合结构分别在光学上实现了2级或3级的巴特沃斯滤波器,并实现了具有陡峭斜率和低边带的平顶透射光谱。此外,我们表明,由三阶或四阶巴特沃斯滤波器组成的复合结构可以分别精确地逼近四阶或五阶巴特沃斯滤波器。所提出的理论结果通过对由所谓的W结构(在高折射率介电环境中由高折射率核心层和两个低折射率熔覆层组成的简单三层谐振结构)组成的复合结构进行了严格的数值模拟。仿真结果证实了平顶透射率峰的形成,其形状与推导的理论描述完全吻合。此外,我们展示了一种非常简单的控制透射率峰宽的机制,该机制包括改变初始W结构的包层厚度,并能够产生具有显着亚纳米宽度的平顶透射峰。(C) 2019 年美国光学学会根据 OSA 开放获取出版的条款

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