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General Strategy for Broadband Coherent Perfect Absorption and Multi-wavelength All-optical Switching Based on Epsilon-Near-Zero Multilayer Films

机译:基于Epsilon-Near-Zero多层薄膜的宽带相干完美吸收和多波长全光切换的总体策略

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摘要

We propose a general, easy-to-implement scheme for broadband coherent perfect absorption (CPA) using epsilon-near-zero (ENZ) multilayer films. Specifically, we employ indium tin oxide (ITO) as a tunable ENZ material, and theoretically investigate CPA in the near-infrared region. We first derive general CPA conditions using the scattering matrix and the admittance matching methods. Then, by combining these two methods, we extract analytic expressions for all relevant parameters for CPA. Based on this theoretical framework, we proceed to study ENZ CPA in a single layer ITO film and apply it to all-optical switching. Finally, using an ITO multilayer of different ENZ wavelengths, we implement broadband ENZ CPA structures and investigate multi-wavelength all-optical switching in the technologically important telecommunication window. In our design, the admittance matching diagram was employed to graphically extract not only the structural parameters (the film thicknesses and incident angles), but also the input beam parameters (the irradiance ratio and phase difference between two input beams). We find that the multi-wavelength all-optical switching in our broadband ENZ CPA system can be fully controlled by the phase difference between two input beams. The simple but general design principles and analyses in this work can be widely used in various thin-film devices
机译:我们提出了一种通用的,易于实现的方案,该方案使用epsilon近零(ENZ)多层膜实现宽带相干完美吸收(CPA)。具体而言,我们采用铟锡氧化物(ITO)作为可调ENZ材料,并在理论上研究了近红外区域的CPA。我们首先使用散射矩阵和导纳匹配方法得出一般CPA条件。然后,通过结合这两种方法,我们提取出CPA所有相关参数的解析表达式。在此理论框架的基础上,我们继续研究单层ITO膜中的ENZ CPA,并将其应用于全光开关。最后,使用不同ENZ波长的ITO多层膜,我们实现了宽带ENZ CPA结构,并在技术上重要的电信窗口中研究了多波长全光交换。在我们的设计中,使用导纳匹配图不仅以图形方式提取结构参数(膜厚度和入射角),而且还以图形方式提取输入光束参数(两个输入光束之间的辐照率和相位差)。我们发现,宽带ENZ CPA系统中的多波长全光切换可以通过两个输入光束之间的相位差完全控制。这项工作中简单但通用的设计原理和分析可广泛用于各种薄膜器件中

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