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一种基于金刚石多层波导结构微环谐振器的仿真分析

李志全 白兰迪 顾而丹 谢锐杰 刘同磊 牛力勇 冯丹丹 岳中

物理学报2017,Vol.66Issue(20):93-101,9.
物理学报2017,Vol.66Issue(20):93-101,9.DOI:10.7498/aps.66.204203

一种基于金刚石多层波导结构微环谐振器的仿真分析

Simulation analysis of micro-ring resonator based on diamond multilayer waveguide structure

李志全 1白兰迪 1顾而丹 1谢锐杰 1刘同磊 1牛力勇 1冯丹丹 1岳中1

作者信息

  • 1. 燕山大学电气工程学院, 秦皇岛 066004
  • 折叠

摘要

Abstract

With the development of the technology for fabricating high-quality synthetic diamond and diamond waveguide structures, more and more researchers are being involved in exploring the particular optical properties of diamond for different applications. Because of its high refractive index and nontoxicity to biological species, diamond can be used to make micro-ring resonator to detect the concentration of liquid or gas. In this paper, a single micro-ring resonator model with diamond serving as the core layer is proposed. In the model, the vertical-section of the waveguide adopts a five-layer ridge-type waveguide structure based on As2S3, SiO2 and diamond, i.e. As2S3-SiO2-Diamond-SiO2-As2S3. To investigate the optical properties of the resonator, the vertical-section of the single straight waveguide, the coupling region of the direct waveguide, and the ring waveguide are simulated with the adopted operating wavelengthλ=1550 nm based on the coupling mode theory and micro-ring resonance theory. In addition, the distribution of the field strength for the micro-ring is described at a resonant wavelength of 1543 nm. It is very important to explore the field intensity distribution of the micro-ring for understanding how the light transmits. The transmission characteristics of the micro-ring with the change of the distance between the straight waveguide and the ring waveguide in the coupling region are also simulated. The quality factor and the influence of the coupling coefficient change on the output spectrum are studied by the transfer matrix method and the micro-ring loss is discussed. It is shown that the micro-ring resonator designed with the diamond material has good transmission characteristics. When the resonant wavelength is 1543 nm, the resonant peak reaches more than-12 dB. The quality factor is about 1.54 × 105. When the coupling coefficient k is 0.01, the free spectral range is about 40 nm. The coupling coefficient k is determined by the distance S of the coupling region. The results show that when S is equal to 50 nm, the output spectrum has a good extinction ratio and is better compared with the other values. The error of material processing is mainly affected by size, so the output spectrum near the distance S =50 nm is studied. The result shows that in the tiny change scope, the spectral output peak is linearly related to S. The structure we suggested in this paper expands the application scope of diamond in the field of optics, and provides some guiding significance for developing the optical integrated chips.

关键词

金刚石芯层/微环谐振器/多层脊型波导结构

Key words

diamond core layer/micro-ring resonator/multi-layer waveguide ridge structure

引用本文复制引用

李志全,白兰迪,顾而丹,谢锐杰,刘同磊,牛力勇,冯丹丹,岳中..一种基于金刚石多层波导结构微环谐振器的仿真分析[J].物理学报,2017,66(20):93-101,9.

基金项目

河北省自然科学基金(批准号: F2017203316)资助的课题.Project supported by the Natural Science Foundation of Hebei Province, China (Grant No. F2017203316). (批准号: F2017203316)

物理学报

OA北大核心CSCDCSTPCDSCI

1000-3290

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