徐忠揚

徐忠揚,男,博士,南京航空航天大學副教授、博士生導師。主要從事微波光子技術在雷射測距、時間頻率同步等領域的套用研究。主持基礎加強重點項目課題2項,創新特區重點項目課題1項、國家自然科學基金2項、國家重點研發計畫子課題1項等。以第一作者或通信作者身份在Laser and Photonics Reviews ,Photonics Research,APL Photonics,IEEE Transactions on Instrumentation & Measurement 等期刊共發表論文十餘篇。授權發明專利7項,美國發明專利1項,歐洲專利1項,日本專利1項。與華為、中國電科、航天科工、航空工業等單位長期保持合作關係。

入選江蘇省“雙創博士”計畫,南京航空航天大學“長空學者”,2023年“中國微波光子學術新星”。擔任領域旗艦會議2023 IEEE微波光子學年會的Publish Co-Chair,第八屆微波光子學技術及套用研討會專題分會委員。擔任IEEE Access, IEEE Journal of Lightwave technology, Optics Letters, Optics Express等期刊審稿人。

人物經歷,研究方向,教育經歷,工作經歷,期刊論文,科研項目,

人物經歷

徐忠揚,男,博士,南京航空航天大學副教授、博士生導師。主持基礎加強重點項目課題2項,創新特區重點項目課題1項、國家自然科學基金2項、國家重點研發計畫子課題1項等。以第一作者或通信作者身份在Laser and Photonics Reviews ,Photonics Research,APL Photonics,IEEE Transactions on Instrumentation & Measurement 等期刊共發表論文十餘篇。授權發明專利7項,美國發明專利1項,歐洲專利1項,日本專利1項。與華為、中國電科、航天科工、航空工業等單位長期保持合作關係。
入選江蘇省“雙創博士”計畫,南京航空航天大學“長空學者”,2023年“中國微波光子學術新星”。擔任領域旗艦會議2023 IEEE微波光子學年會的Publish Co-Chair,第八屆微波光子學技術及套用研討會專題分會委員。擔任IEEE Access, IEEE Journal of Lightwave technology, Optics Letters, Optics Express等期刊審稿人。

研究方向

主要從事微波光子技術在雷射測距、時間頻率同步等領域的套用研究。

教育經歷

2010-2015 清華大學 物理系 博士
2006-2010 中山大學 物理科學與工程技術學院 學士

工作經歷

2024-至 今 南京航空航天大學 電子信息工程學院 副教授 博導
2021-2024 南京航空航天大學 電子信息工程學院 副教授 碩導
2017-2021 南京航空航天大學 電子信息工程學院 講師 碩導
2015-2017 上海雷射電漿研究所 助理研究員

期刊論文

Q. Y. Yu, H. Chen, X. Y. Sun, M. T. Tan, Y. Li, Z. Y. Xu#, and S. L. Pan, "Ultra-broadband chaotic laser and microwave ranging based on an optoelectronic oscillator," Opt. Lett. 50, 3557-3560 (2025)
M. Z. Liu, X. Y. Sun, Z. Y. Xu# et.al. "Frequency Synchronization With High Frequency Stability and Low Phase Noise via a Free-Space Optical Link," Journal of Lightwave Technology, vol. 43, no. 14, pp. 6547-6553, 15 July. 15, 2025,
X. Y. Sun, Z. Y. Xu#, H. T. Lu, Q. Y. Yu, K. Wang, and S. L.Pan. "Frequency-modulated continuous-wave laser ranging beyond the limits of bandwidth and phase noise", APL Photonics 1 May 2025; 10 (5): 056118.
H. Chen , Q. Shen, T. Xie , S. Liu , Q. Yu, Y. Wang , H. Fu , D. Chen , Z.Y. Xu# , and S. Pan. "Generation of Microwave Frequency Comb, Chaotic, and Single-Frequency Microwave Signal in a Short-Cavity-Based Optoelectronic Oscillator", Journal of Lightwave Technology, vol. 42, no. 23, pp. 8102-8108.
Y. Pu, X. Sun, Z. Y. Xu# , S. Pan. “Amplitude variations caused by fiber nonlinearity in photonics-assisted microwave signal replication”, Optics Communications,Volume 559,2024,130420.
Z. Y. Xu† , X. Y. Sun†, Y. W. Zhang, Y. Yang, X. C. Wang and S. L. Pan. "Absolute time delay measurement over an existing radio over free-space optical link with sub-picosecond accuracy." Laser & Photonics Reviews, 2023, 2200835.
B. W. Qiu , G. Hu , Z. Y. Xu#, X. B. Zhu, Y. M. Zhang, S. L. Pan."Frequency-Modulated Continuous-Wave Laser Ranging With Sub-Nyquist Sampling Rate Using Asymmetric Chirped Waveforms." IEEE Sensors Letters, 2022, 6(11): 2475-1472
B. W. Qiu, Y. W. Zhang, X. Y. Sun, Z. Y. Xu#, X. Liang, D. Wang and S. L. Pan. "Laser Ranging With Micrometer Precision and kHz Rate via Joint Frequency-Phase Measurement." IEEE Photonics Technology Letters, 2022, 34(22), 1214-1217.
Z. Y. Xu, F. X. Yu, B. W. Qiu, Y. W. Zhang, Y. X. Sun and S. L. Pan, "Coherent random-modulated con-tinuous-wave LiDAR based on phase-coded subcarrier modulation (invited paper)" Photonics 2021, 8(11), 475.
Z. Y. Xu† , X. Y. Sun† , F. X. Yu, K. Chen, and S. L. Pan, " FMCW laser ranging using low-duty-cycle signals for the applications of real-time super-resolved ranging," Optics Letters, 46, 258-261, (2021).
Z. Y. Xu, J. N. Zhao, F. Z. Zhang, L. J. Zhang, T. W. Yang, Q. R. Li, and S. L. Pan, " Photonics-based radar-lidar integrated system for multi-sensor fusion applications," IEEE Sensors Journal, 20, 15068-15074, (2020).
Z. Y. Xu, K. Chen, X. Y. Sun, K. L. Zhang, Y. C. Wang, J. Deng, and S. L. Pan, "Frequency-Modulated Continuous-Wave Coherent Lidar With Downlink Communications Capability," IEEE Photonics Technology Letters, 32, 655-658, (2020).
Z. Y. Xu,H. X. Zhang, K. Chen, and S. L. Pan, "FMCW Lidar Using Phase-Diversity Coherent Detection to Avoid Signal Aliasing," IEEE Photonics Technology Letters, 31, 1822-1825 (2019).
Z. Y. Xu, H. X. Zhang, K. Chen, and S. L. Pan, "Compact All-fiber Polarization Coherent Lidar Based on a Polarization Modulator," IEEE Transactions on Instrumentation & Measurement, vol. 69, no. 5, pp. 2193 - 2198.
Z. Y. Xu, K. Chen, H. X. Zhang, and S. L. Pan, "Multifunction Lidar System Based on Polarization-Division Multiplexing," IEEE/OSA Journal of Lightwave Technology, vol. 37, no. 9, pp. 2000-2007, May 2019.
Z. Y. Xu, L. Z. Tang, H. X. Zhang, and S. L. Pan, "Simultaneous real-time measurement of distance and velocity via a chirped lidar based on dual-sideband modulation," IEEE Photonics Technology Letters, 29, 2254-2257 (2017).
Z. Y. Xu, Y. H. Li, J. Wang, “Long-period grating inscription on polymer functionalized optical microfibers and its applications in optical sensing,” Photonic Research, 4, 45-48 (2016).
Z. Y. Xu, Y. H. Li, and L. J. Wang, “In situ fine tailoring of group velocity dispersion in optical microfibers via nanocoatings,” Optics Express, 22, 28338-28345 (2014).
Z. Y. Xu, Y. H. Li, and L. J. Wang, “Versatile technique to functionalize optical microfibers via a modified sol-gel dip-coating method,” Optics Letters, 39, 34-36 (2014).
孫修遠,王輝,徐忠揚*,馮利鵬,王祥傳,潘時龍,“ 基於相推法的空間光載射頻鏈路絕對延時測量”,上海航天,2022,39(02).
徐忠揚,張洪祥,陳凱,潘時龍,“ 調頻連續波雷射雷達技術進展” 真空電子技術,4, 18-26 (2019).

科研項目

代表性項目:
1、國家自然科學基金面上項目,面向自由空間微波光子鏈路的高精度絕對延時測量方法研究,2021/01-2025/12.
2、國家自然科學基金青年項目,利用表面微結構調控微納光纖偏振特性的研究,2016/01-2019/12.
3、江蘇省高層次創新創業人才引進計畫“雙創博士”項目,基於微納光纖的微波光子器件研究,2019/01-2021/12.
4、上海航天科技創新基金項目,星間光載射頻信號傳輸鏈路研究,2019/01-2021/12.
5、國家重點研發計畫子課題,*****信號微波光子快速探測技術,2020/12-2023/12.

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