首页 | 本学科首页   官方微博 | 高级检索  
     检索      

Recent progress in integrated electro-optic frequency comb generation
作者姓名:Hao Sun  Mostafa K.halil  Zifei Wang  Lawrence R.Chen
作者单位:Department of Electrical and Computer Engineering,McGill University,Montreal.QC H3A 0E9,Canada
基金项目:This research was supported in part by the Natural Sciences and Engineering Research Council of Canada and the Fonds du Québec-Nature et Technologies.We thank M.Ma,R.Adams,K.Yim,X.Jin,R.Maram,B.Naghdi,A.Sarmani,M.Jacques,and D.V.Plant for their contributions
摘    要:Optical frequency combs have emerged as an important tool enabling diverse applications from test-and-measurement,including spectroscopy,metrology,precision distance measurement,sensing,as well as optical and microwave waveform synthesis,signal processing,and communications.Several techniques exist to generate optical frequency combs,such as mode-locked lasers,Kerr micro-resonators,and electro-optic modulation.Important characteristics of optical frequency combs include the number of comb lines,their spacing,spectral shape and/or flatness,and intensity noise.While mode-locked lasers and Kerr micro-resonators can be used to obtain a large number of comb lines compared to electro-optic modulation,the latter provides increased flexibility in tuning the comb spacing.For some applications in optical communications and microwave photonics,a high degree of integration may be more desirable over a very large number of comb lines.In this paper,we review recent progress on integrated electro-optic frequency comb generators,including those based on indium phosphide,lithium niobate,and silicon photonics.

关 键 词:electro-optic  frequency  comb  generation  integrated  photonics  silicon  photonics  integrated  lithium  niobate  indium  phosphide

Recent progress in integrated electro-optic frequency comb generation
Hao Sun,Mostafa K.halil,Zifei Wang,Lawrence R.Chen.Recent progress in integrated electro-optic frequency comb generation[J].Chinese Journal of Semiconductors,2021,42(4):5-16.
Authors:Hao Sun  Mostafa Khalil  Zifei Wang  Lawrence RChen
Abstract:Optical frequency combs have emerged as an important tool enabling diverse applications from test-and-measure-ment,including spectroscopy,metrology,precision distance measurement,sensing,as well as optical and microwave wave-form synthesis,signal processing,and communications.Several techniques exist to generate optical frequency combs,such as mode-locked lasers,Kerr micro-resonators,and electro-optic modulation.Important characteristics of optical frequency combs in-clude the number of comb lines,their spacing,spectral shape and/or flatness,and intensity noise.While mode-locked lasers and Kerr micro-resonators can be used to obtain a large number of comb lines compared to electro-optic modulation,the lat-ter provides increased flexibility in tuning the comb spacing.For some applications in optical communications and microwave photonics,a high degree of integration may be more desirable over a very large number of comb lines.In this paper,we re-view recent progress on integrated electro-optic frequency comb generators,including those based on indium phosphide,lithi-um niobate,and silicon photonics.
Keywords:electro-optic frequency comb generation  integrated photonics  silicon photonics  integrated lithium niobate  indium phosphide
本文献已被 维普 万方数据 等数据库收录!
点击此处可从《半导体学报》浏览原始摘要信息
点击此处可从《半导体学报》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号