English 
潘时龙

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

主要任职:电子信息工程学院常务副院长

其他任职:微波光子技术国家级重点实验室主任

性别:男

毕业院校:清华大学

学位:工学博士学位

所在单位:电子信息工程学院

办公地点:电子信息工程学院216

联系方式:025-84892838

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Ultrahigh-Resolution Optical Vector Analysis Based on Optical Single-Sideband Modulation

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所属单位:电子信息工程学院

发表刊物:JOURNAL OF LIGHTWAVE TECHNOLOGY

关键字:Measurement techniques microwave photonics optical variables measurement optical vector analyzers (OVAs) optical modulation

摘要:Knowing magnitude, phase, and polarization responses is of great importance for fabrication and application of optical devices. A large variety of parameters such as insertion loss, dispersion, group delay, polarization-dependent loss, and polarization mode dispersion can be obtained based on these responses. Conventional approaches achieve the optical spectral responses by sweeping the wavelength of a laser source. Restricted by the low-wavelength accuracy and poor wavelength stability of the wavelength-swept laser source, the resolution of the optical vector analyzers (OVAs) are usually poor (> 1.6 pm). To achieve ultrahigh resolution measurement, an OVA based on optical single-sideband (OSSB) modulation has been proposed and developed, which potentially has a sub-Hz resolution. However, electrical-to-optical and optical-to-electrical conversions are required to implement the electrical frequency sweeping and to detect the phase and magnitude information in the electrical domain, which limits the spectral measurement range, accuracy, and dynamic range. In the past decade, great efforts have been devoted to deal with these problems. In this paper, techniques for constructing high-performance OSSB-based OVAs are discussed with an emphasis on the system architectures and operation principles for improving the spectral measurement range, accuracy, and dynamic range of the measurement system. Possible future research directions are also discussed.

ISSN号:0733-8724

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发表时间:2017-02-15

合写作者:F70206491

通讯作者:潘时龙

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