Singular Optical Characteristics Generated by Fibonacci Multilayers Composed of PT-Symmetric Elements

Fen Tang, Xiangbo Yang, Xiaomin Wang, Yao Zhang, D. Deng, Hongzhan Liu, Zhongchao Wei
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引用次数: 2

Abstract

In this paper, a class of one-dimensional (1D) Fibonacci quasi-periodic multilayers composed of two parity-time-symmetric (PT -symmetric) elements are designed. Their scattering spectra, transparencies, invisibilities, and other singular optical properties are investigated in detail. It is found that three types of new systematic phases, ten types of new unidirectional transparencies, two types of new bidirectional transparencies and one type of new bidirectional invisibility are created by this class of interesting systems, which possess more types compared with the PT -symmetric periodic multilayers and the Thue-Morse multilayers composed of PT -symmetric elements. It can be seen that although the order degree of the Fibonacci multilayers is lower than that of the other two systems, their types of systematic phases, transparencies, and invisibilities are obtained, their types of systematic phases, transparencies, and invisibilities are more abundant. This proves that, as the order degree of the PT -symmetric system decreases, its types of singular optical properties become more abundant. This work sheds some light on the PT -symmetric optical structures and Fibonacci sequence, offering the possibility to widen their application field. Moreover, it provides a
theoretical basis to design new optical devices.
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由pt对称元组成的斐波那契多层膜产生的奇异光学特性
本文设计了一类由两个奇偶-时间对称(PT -对称)元组成的一维Fibonacci拟周期多层结构。详细研究了它们的散射光谱、透明度、不可见性和其他奇异光学性质。结果发现,这类有趣的体系产生了3种新的系统相位、10种新的单向透明、2种新的双向透明和1种新的双向不可见性,与PT对称周期多层和PT对称单元组成的Thue-Morse多层相比,具有更多的类型。可以看出,虽然斐波那契多层体系的有序度比另外两种体系低,但得到了它们的系统相、透明和不可见类型,它们的系统相、透明和不可见类型更为丰富。这证明了PT对称系统的有序度越小,其奇异光学性质的种类越丰富。这项工作对PT对称光学结构和斐波那契数列的研究有一定的启发,为拓宽其应用领域提供了可能。为设计新型光学器件提供
理论依据。
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