期刊
CHINESE JOURNAL OF PHYSICS
卷 77, 期 -, 页码 816-825出版社
ELSEVIER
DOI: 10.1016/j.cjph.2021.07.039
关键词
Waveguide; Anti-PT-symmetry; Optical materials; Metamaterials
资金
- National Natural Science Foundation of China [11674107, 61475049, 11775083, 61875057, 61774062, 61771205]
- Special Funds for the Cultivation of Guangdong College Students Scientific and Technological Innovation, China
This paper designs a unique one-dimensional double anti-PT-symmetric ring optical waveguide network, studies its optical characteristics and identifies extremum mode points through a connection function, leading to extraordinary ultra-strong transmission and reflection, showing potential for applications in optical filters and amplifiers.
In this paper, a unique one-dimensional double anti-PT-symmetric ring optical waveguide network (1D DAPTSROWN) is designed whose refractive index satisfies n(x) = -n*(-x). The extraordinary optical characteristics of the network are studied by means of the generalized Floquet-Bloch theorem, three-material network equation and generalized eigenfunction method. Due to the physical difference between the anti-PT-symmetric and PT-symmetric optical waveguide networks, the previous method of the PT-symmetric optical waveguide network is not applicable to the anti-PT-symmetric optical waveguide network designed in this paper. Thus, based on the previous method and the network equation, we propose a connection function to identify the extremum mode points in the anti-PT-symmetric optical waveguide network. At the extremum mode point, the optical waveguide network can produce extraordinary ultra-strong transmission, ultra-strong reflection, and ultra-strong photonic localizations. The corresponding calculated values in this paper arrives at 10(28), which is much larger than 10(12) (the best result reported previously). This shows that the anti-PT-symmetric network may have potential in applications in designing optical filters, optical amplifiers and so on.
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