帮助 关于我们

返回检索结果

硅基亚波长光栅波导在微波光子学中的应用
Subwavelength Grating Waveguide for Microwave Photonic Applications

查看参考文献56篇

文摘 为了满足集成微波光子学的发展需要,随着硅基光子学的发展,硅基亚波长光栅波导被提出并受到关注.硅基亚波长光栅具备灵活度高、折射率可调等特性,主要用于实现光学滤波器、调制器、延迟线等集成微波光子学组件.本文对这类器件进行举例与讨论,并且在结尾提出对硅基亚波长光栅波导在集成微波光子学中应用的展望.
其他语种文摘 In order to meet the increasing integration demand from integrated microwave photonics, the devices based on subwavelength grating waveguide is proposed and studied. The subwavelength grating waveguide is mainly used in filters and optical delay lines in integrated microwave photonics, with design freedom in refractive index. We review and discuss the developments of these applications, and provide the outlook on the application of the subwavelength grating waveguide devices in integrated microwave photonics at the end.
来源 电子学报 ,2022,50(9):2233-2241 【核心库】
DOI 10.12263/DZXB.20220090
关键词 硅基光子学 ; 亚波长光栅波导 ; 集成微波光子学 ; 滤波器 ; 调制器 ; 光学延迟线
地址

1. 东南大学, 光传感通信综合网络国家地方联合工程研究中心, 江苏, 南京, 210096  

2. 麦吉尔大学电子工程系, 加拿大, 蒙特利尔, H3A 0E9

语种 中文
文献类型 研究性论文
ISSN 0372-2112
学科 电子技术、通信技术
基金 国家重点研发计划 ;  江苏省自然科学基金 ;  中央高校基本科研业务费专项资金
文献收藏号 CSCD:7323074

参考文献 共 56 共3页

1.  Capmany J. Microwave photonics combines two worlds. Nature Photonics,2007,1(6):319-330 CSCD被引 156    
2.  Seeds A J. Microwave photonics. Journal of Lightwave Technology,2006,24(12):4628-4641 CSCD被引 63    
3.  Iezekiel S. RF engineering meets optoelectronics: Progress in integrated microwave photonics. IEEE Microwave Magazine,2015,16(8):28-45 CSCD被引 5    
4.  Marpaung D. Integrated microwave photonics. Nature Photonics,2019,13(2):80-90 CSCD被引 64    
5.  Shan W. Broadband continuously tunable microwave photonic delay line based on cascaded silicon microrings. Optics Express,2021,29(3):3375-3385 CSCD被引 1    
6.  Chew S X. Integrated microwave photonic phase shifter with full tunable phase shifting range (>360°) and RF power equalization. Optics Express,2019,27(10):14798-14808 CSCD被引 1    
7.  Mckay L. Integrated microwave photonic true-time delay with interferometric delay enhancement based on Brillouin scattering and microring resonators. Optics Express,2020,28(24):36020-36032 CSCD被引 2    
8.  Fan Z Q. Hybrid frequencytunable parity-time symmetric optoelectronic oscillator. Journal of Lightwave Technology,2020,38(8):2127-2133 CSCD被引 3    
9.  Zhu N. A novel microwave photonic filter for frequency-tripled signals. 2020 Asia Communications and Photonics Conference(ACP) and International Conference on Information Photonics and Optical Communications (IPOC),2020 CSCD被引 1    
10.  Zhang W F. Photonic integrated field-programmable disk array signal processor. Nature Communications,2020,11(1):406 CSCD被引 2    
11.  Wang J. Subwavelength grating filtering devices. Optics Express,2014,22(13):15335-15345 CSCD被引 3    
12.  Chen X. Polarization-independent grating couplers for silicon-on-insulator nanophotonic waveguides. Optics Letters,2011,36(6):796-798 CSCD被引 5    
13.  Bock P. Subwavelength grating periodic structures in silicon-on-insulator: A new type of microphotonic waveguide. Optics Express,2010,18(19):20251-20262 CSCD被引 8    
14.  Xu X C. Complementary metal-oxide-semiconductor compatible high efficiency subwavelength grating couplers for silicon integrated photonics. Applied Physics Letters,2012,101(3):031109 CSCD被引 4    
15.  Qi F. Large-aperture subwavelength grating couplers. Applied Optics,2016,55(11):2960-2966 CSCD被引 3    
16.  Donzella V. Sub-wavelength grating components for integrated optics applications on SOI chips. Optics Express,2014,22(17):21037-21050 CSCD被引 3    
17.  Ortega-Monux A. Disorder effects in subwavelength grating metamaterial waveguides. Optics Express,2017,25(11):12222-12236 CSCD被引 3    
18.  Donzella V. Design and fabrication of SOI micro-ring resonators based on sub-wavelength grating waveguides. Optics Express,2015,23(4):4791-4803 CSCD被引 6    
19.  Flueckiger J. Sub-wavelength grating for enhanced ring resonator biosensor. Optics Express,2016,24(14):15672-15686 CSCD被引 8    
20.  Wang Z. Geometrical tuning art for entirely subwavelength grating waveguide based integrated photonics circuits. Scientific Reports,2016,6(1):24106 CSCD被引 2    
引证文献 1

1 丁新辉 完全实现自主可控的国产光栅设计软件 中国激光,2024,51(14):1413002
CSCD被引 0 次

显示所有1篇文献

论文科学数据集
PlumX Metrics
相关文献

 作者相关
 关键词相关
 参考文献相关

版权所有 ©2008 中国科学院文献情报中心 制作维护:中国科学院文献情报中心
地址:北京中关村北四环西路33号 邮政编码:100190 联系电话:(010)82627496 E-mail:cscd@mail.las.ac.cn 京ICP备05002861号-4 | 京公网安备11010802043238号