| Literature DB >> 33540776 |
Mi Lin1, Lixin Fu1, Shakeel Ahmed1, Qiong Wang1, Yaoxian Zheng1, Zixian Liang2, Zhengbiao Ouyang1.
Abstract
We propose a type of polarization-independent circulator based on a composite rod of ferrite and plasma materials in a two-dimensional photonic crystal (PhC) slab. Only one composite rod was set at the center of the structure to provide circulation for both TE- and TM-polarized waves. Additionally, to improve the performance of the circulator, three additional rods were inserted to improve the coupling condition between the center magneto-optical microcavity and the corresponding waveguides. Finite element method was used to calculate the characteristics of the structure and the Nelder-Mead optimization method was employed to obtain the optimum parameters. The results show that a low insertion loss (~0.22 dB) and high isolation (~14 dB) can be achieved in our structure for waves of both TE and TM polarizations. The idea presented here may be useful for designing compact polarization devices in large-scale integrated photonic circuits.Entities:
Keywords: circulator; ferrite; photonic crystal; plasma; polarization-independent
Year: 2021 PMID: 33540776 PMCID: PMC7913094 DOI: 10.3390/nano11020381
Source DB: PubMed Journal: Nanomaterials (Basel) ISSN: 2079-4991 Impact factor: 5.076