Wideband Tunable Frequency-Doubling Optoelectronic Oscillator Using a Polarization Modulator and an Optical Bandpass Filter
A wideband tunable frequency-doubling optoelectronic oscillator (FD-OEO) is proposed and experimentally demonstrated based on a polarization modulator and an optical bandpass filter (OBPF). The central frequency of the correspondingly fundamental OEO could be adjusted by tuning the bandwidth and cen...
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| Published in | Chinese physics letters Vol. 34; no. 8; pp. 67 - 70 |
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| Main Author | |
| Format | Journal Article |
| Language | English |
| Published |
01.07.2017
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0256-307X 1741-3540 |
| DOI | 10.1088/0256-307X/34/8/084204 |
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| Abstract | A wideband tunable frequency-doubling optoelectronic oscillator (FD-OEO) is proposed and experimentally demonstrated based on a polarization modulator and an optical bandpass filter (OBPF). The central frequency of the correspondingly fundamental OEO could be adjusted by tuning the bandwidth and central frequency of the OBPF, which could also be regarded as a photonic-assisted tunable microwave filter. The frequency tuning range of the FD-OEO covers from 9.5 to 32.8?GHz, and the single sideband phase noise of the fundamental signal is lower than -100dBc/Hz at an offset of 10?kHz. Moreover, the frequency stability of the generated signal is investigated by measuring its Allan deviation. The Allan deviation of the generated fundamental signal at 10?GHz is 2.39×10^-9. |
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| AbstractList | A wideband tunable frequency-doubling optoelectronic oscillator (FD-OEO) is proposed and experimentally demonstrated based on a polarization modulator and an optical bandpass filter (OBPF). The central frequency of the correspondingly fundamental OEO could be adjusted by tuning the bandwidth and central frequency of the OBPF, which could also be regarded as a photonic-assisted tunable microwave filter. The frequency tuning range of the FD-OEO covers from 9.5 to 32.8?GHz, and the single sideband phase noise of the fundamental signal is lower than -100dBc/Hz at an offset of 10?kHz. Moreover, the frequency stability of the generated signal is investigated by measuring its Allan deviation. The Allan deviation of the generated fundamental signal at 10?GHz is 2.39×10^-9. |
| Author | 黄庆超 王琪 杨成悟 陈伟 刘建国 祝宁华 |
| AuthorAffiliation | Laboratory of Solid State Optoelectronic information Technology, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083 College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049 |
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| DocumentTitleAlternate | Wideband Tunable Frequency-Doubling Optoelectronic Oscillator Using a Polarization Modulator and an Optical Bandpass Filter |
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| Notes | 11-1959/O4 Qing-Chao Huang1,2, Qi Wang1,2, Cheng-Wu Yang1,2, Wei Chen1, Jian-Guo Liu1,2, Ning-Hua Zhu1(1.Laboratory of Solid State Optoelectronic information Technology, Institute of Semiconductors, Chinese Academy of Sciences, Beijing 100083;2.College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing 100049) A wideband tunable frequency-doubling optoelectronic oscillator (FD-OEO) is proposed and experimentally demonstrated based on a polarization modulator and an optical bandpass filter (OBPF). The central frequency of the correspondingly fundamental OEO could be adjusted by tuning the bandwidth and central frequency of the OBPF, which could also be regarded as a photonic-assisted tunable microwave filter. The frequency tuning range of the FD-OEO covers from 9.5 to 32.8?GHz, and the single sideband phase noise of the fundamental signal is lower than -100dBc/Hz at an offset of 10?kHz. Moreover, the frequency stability of the generated signal is investigated by measuring its Allan deviation. The Allan deviation of the generated fundamental signal at 10?GHz is 2.39×10^-9. |
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| References | 23 24 25 Yang B (21) 2012 Sakamoto T (16) 2005 10 11 12 13 14 15 17 18 19 Shin M (7) 2007; 44 1 2 3 4 5 6 8 9 20 Qiao Y F (22) 2013; 15 |
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| Title | Wideband Tunable Frequency-Doubling Optoelectronic Oscillator Using a Polarization Modulator and an Optical Bandpass Filter |
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