English 
朱丹

教授 博士生导师

招生学科专业:
电子科学与技术 -- 【招收博士、硕士研究生】 -- 电子信息工程学院
信息与通信工程 -- 【招收博士、硕士研究生】 -- 电子信息工程学院
电子信息 -- 【招收博士、硕士研究生】 -- 电子信息工程学院

性别:女

毕业院校:清华大学

学历:清华大学

学位:工学博士学位

所在单位:电子信息工程学院

联系方式:danzhu@nuaa.edu.cn

电子邮箱:

手机版

访问量:

最后更新时间:..

当前位置: 中文主页 >> 科学研究 >> 论文成果
A Coupled Optoelectronic Oscillator With Performance Improved by Enhanced Spatial Hole Burning in an Erbium-Doped Fiber

点击次数:

所属单位:电子信息工程学院

发表刊物:JOURNAL OF LIGHTWAVE TECHNOLOGY

关键字:Coupled optoelectronic oscillator fiber optics microwave photonics optical signal processing unpumped erbium-doped fiber

摘要:A coupled optoelectronic oscillator (COED) with performance improved by the enhanced spatial hole burning (SHB) effect in an unpumped erbium-doped fiber (EDF) is proposed and demonstrated. In the proposed COED, a strong standing-wave forming structure is incorporated to enable large SHB effect in the unpumped EDF, which significantly improves the supermode suppression ratio of the generated optical pulse, and the sidemode suppression ratio and phase noise performance of the generated electrical signal. A 10-GHz COED is established. A stable optical pulse train is successfully generated with a supermode suppression ratio as high as 75 dB. The system is observed in the lab environment for 1.5 h with no significant variation. Without introducing any long fiber or multiloop structure in the optoelectronic oscillator loop, the sidemode suppression ratio of the 10-GHz RF output reaches 90 dB and the phase noise is about -130 dBc/Hz at 10-kHz offset. The influence of the optical power injected into the EDF, and the effects of the absorption coefficient and length of the EDF on the key parameters of the COED are investigated and discussed.

ISSN号:0733-8724

是否译文:

发表时间:2018-09-01

合写作者:Du, Tianhua,潘时龙

通讯作者:朱丹,潘时龙

版权所有©2018- 南京航空航天大学·信息化处(信息化技术中心)