周沛

发布时间:2026-06-24浏览次数:2546

【期刊论文

[1] P. Zhou, N. Q. Li, and S. L. Pan, Photonic microwave harmonic down-converter based on stabilized period-one nonlinear dynamics of semiconductor lasers, Optics Letters, vol. 44, no. 19, pp. 4869-4872, Oct. 2019.

[2] F. Z. Zhang, P. Zhou, S. L. Pan, and D. C. Zhang, Terahertz generation by optically injected semiconductor laser for radar and communication applications, The Journal of Engineering, Aug. 2019.

[3] B. W. Zhang, D. Zhu, P. Zhou, C. X. Xie, and S. L. Pan, Tunable triangular frequency modulated microwave waveform generation with improved linearity using an optically injected semiconductor laser, Applied Optics, vol. 58, no. 20, pp. 5479-5485, Jul. 2019.

[4] P. Zhou, F. Z. Zhang, D. C. Zhang, and S. L. Pan, Performance enhancement of an optically-injected-semiconductor-laser-based optoelectronic oscillator by subharmonic microwave modulation, Optics Letters, vol. 43, no. 21, pp. 5439-5442, Nov. 2018.

[5] P. Zhou, F. Z. Zhang, and S. L. Pan, Generation of Linear Frequency-Modulated Waveforms by a Frequency-Sweeping Optoelectronic Oscillator, Journal of Lightwave Technology, vol. 36, no. 17, pp. 3726-3732, Sep. 2018.

[6] P. Zhou, F. Z. Zhang, Q. S. Guo, and S. L. Pan, A modulator-free photonic triangular pulse generator based on semiconductor lasers, IEEE Photonics Technology Letters, vol. 30, no. 14, pp. 1317-1320, Jul. 2018.

[7] P. Zhou, F. Z. Zhang, Q. S. Guo, S. M. Li, and S. L. Pan, Reconfigurable Radar Waveform Generation based on an Optically Injected Semiconductor Laser, Journal of Selected Topics in Quantum Electronics, vol. 23, no. 6, 1801109, Nov. 2017.

[8] Q. S. Guo, F. Z. Zhang, P. Zhou, and S. L. Pan, Dual-band LFM signal generation by frequency quadrupling and polarization multiplexing, IEEE Photonics Technology Letters, vol. 29, no. 16, pp. 1320-1323, Aug. 2017.

[9] B. D. Gao, F. Z. Zhang, P. Zhou, and S. L. Pan, A Frequency-tunable Two-tone Radio Frequency Signal Generator by Polarization Multiplexed Optoelectronic Oscillator, IEEE Microwave and Wireless Components Letters, vol. 27, no. 2, pp. 192-194, Feb. 2017.

[10] F. Z. Zhang, Q. S. Guo, Z. Q. Wang, P. Zhou, G. Q. Zhang, J. Sun, and S. L. Pan, Photonics-based broadband radar for high-resolution and real-time inverse synthetic aperture imaging, Optics Express, vol. 25, no. 14, pp. 16274-16281, Jul. 2017.

[11] F. Z. Zhang, Q. S. Guo, Y. Zhang, Y. Yao, P. Zhou, D. Y. Zhu, and S. L. Pan, Photonics-based Real-time and High-resolution ISAR Imaging of Non-cooperative Target, ChineseOptics Letters, vo. 15, no. 11, 112801, Nov. 2017.

[6] P. Zhou, F. Z. Zhang, X. W. Ye, Q. S. Guo, and S. L. Pan, Flexible Frequency-hopping Microwave Generation by Dynamic Control of Optically Injected Semiconductor Laser, IEEE Photonics Journal, vol. 8, no. 6, article no. 5501909, Dec. 2016.

[12] P. Zhou, F. Z. Zhang, B. D. Gao, and S. L. Pan, Optical pulse generation by an optoelectronic oscillator with optically injected semiconductor laser, IEEE Photonics Technology Letters, vol. 28, no. 17, pp. 1827-1830, Sep. 2016.

[13] P. Zhou, F. Z. Zhang, Q. S. Guo, and S. L. Pan, Linearly chirped microwave waveform generation with large time-bandwidth product by optically injected semiconductor laser, Optics Express, vol. 24, no. 15, pp. 18460-18467, Aug. 2016.

[14] F. Z. Zhang, B. D. Gao, P. Zhou, and S. L. Pan, Triangular Pulse Generation by Polarization Multiplexed Optoelectronic Oscillator, IEEE Photonics Technology Letters, vol. 28, no. 15, pp. 1645-1648, Aug. 2016.

[15] S. L. Pan, P. Zhou, Z. Z. Tang, Y. M. Zhang, F. Z. Zhang and D. Zhu, Optoelectronic Oscillator Based on Polarization Modulation, Fiber and Integrated Optics, vol. 34, no. 4, pp.211-229, Oct. 2015. [Invited Paper]

[16] D. J. Zhu, F. Z. Zhang, P. Zhou and S. L. Pan, Phase noise measurement of wideband microwave sources based on a microwave photonic frequency down-converter, Optics Letters, vol. 40, no. 7, pp. 1326-1329, Apr. 2015.

[17] D. J. Zhu, F. Z. Zhang, P. Zhou, D. Zhu, and S. L. Pan, Wideband phase noise measurement using a multifunctional microwave photonic processor, IEEE Photonics Technology Letters, vol.26, no.24, pp.2434-2437, Dec. 2014.

[18]P. Zhou, S. L. Pan, D. Zhu, R. H. Guo, F. Z. Zhang, and Y. J. Zhao, A compact optoelectronic oscillator based on an electro-absorption modulated laser, IEEE Photonics Technology Letters, vol. 26, no. 1, pp. 86-88, Jan. 2014.

[19] P. Zhou, Z. Z. Tang, S. L. Pan, D. Zhu and D. Ben, Photonic microwave up-conversion using an optoelectronic oscillator based on polarization modulator, Electronics Letters, vol. 48, no. 5, pp. 271-272, Mar. 2012.

[20] S. H. Cai, S. L. Pan, D. Zhu, Z. Z. Tang, P. Zhou and X. F. Chen, Coupled frequency-doubling optoelectronic oscillator based on polarization modulation and polarization multiplexing, Optics Communications, vol. 285, no. 6, pp. 1140-1143, Mar. 2012.

[21] 唐震宙,潘时龙,周沛,朱丹,郭荣辉,贲德. 基于光电振荡器的宽带射频下转换及在高清视频传输的应用.光子学报, 卷号41, 期号10, 1161-1166, 2012.

 

【会议论文

[1] P. Zhou, F. Z. Zhang, Q. S. Guo, and S. L. Pan, Linear frequency modulated waveform generation based on a tunable optoelectronic oscillator, in 2017 International Topical Meeting on Microwave Photonics (MWP 2017), Oct. 23-26, 2017, Beijing, China. (EI: 20181805114156)

[2] P. Zhou, F. Z. Zhang, Q. S. Guo, and S. L. Pan, A Simple Method for Photonic Generation of Linearly Chirped Microwave Waveforms with Ultra-large Time-bandwidth Product, in the Avionics and Vehicle Fiber-Optics and Photonic Conference and the International Topical Meeting on Microwave Photonics 2016 (AVFOP&MWP 2016), Oct. 31-Nov. 3, 2016, Long Beach, California, USA. (EI: 20170603323536)

[3] P. Zhou, F. Z. Zhang, Q. S. Guo, Y. Yao, and S. L. Pan, Agile Frequency-Hopping Microwave Waveform Generation By a Semiconductor Laser Subject to Optical Injection, The 25th Wireless and Optical Communication Conference (WOCC2016), Chengdu, China, 21-23, May 2016. (EI: 20163302712511)

[4] P. Zhou, F. Z. Zhang and S. L. Pan, A Tunable Multi-frequency Optoelectronic Oscillator Based on Stimulated Brillouin Scattering, The 14th International Conference on Optical Communications and Networks (ICOCN2015), Nanjing, China, Jul. 4-5, 2015. [Best Student Paper Award] (EI: 20160201801968)

[5] P. Zhou, F. Z. Zhang and S. L. Pan, A Multi-frequency Optoelectronic Oscillator based on a Single Phase-Modulator, Conference on Lasers and Electro-Optics (CLEO2015), May 10-15, 2015, San Jose, CA, USA. (EI: 20152701008925)

[6] F. Z. Zhang, P. Zhou, S. L. Pan, and D. C. Zhang, Terahertz generation by optically injected semiconductor laser for radar and communication applications, IET International Radar Conference 2018, Nanjing, China, Oct. 17-19, 2018.

[7] B. D. Gao, F. Z. Zhang, P. Zhou, and S. L. Pan, Frequency Tunable Two-Tone Signal Generation Based on Polarization Multiplexed Optoelectronic Oscillator, International Microwave Symposium (IMS 2016), 22-27 May, 2016, San Francisco, California, USA. (EI: 20163702785734)

[8] X. Z. Ge, F. Z. Zhang, P. Zhou, and S. L. Pan, “Flat Optical Frequency Comb Generation Using a Single Polarization Modulator and a Mach-Zehnder Interferometer,” The 20th Optoelectronics and Communications Conference (OECC 2015), Shanghai China, Jun 28th-July 2nd, 2015. (EI: 20161202125790)

[9] Q. S. Guo, F. Z. Zhang, Z. Wang, P. Zhou, and S. L. Pan, High-resolution and Real-time Inverse Synthetic Aperture Imaging based on a Broadband Microwave Photonic Radar in 2017 International Topical Meeting on Microwave Photonics (MWP 2017), Oct.23-26, 2017, Beijing, China. (EI: 20181805114312)

 

【特邀报告

[1] S. L. Pan, P. Zhou, and F. Z. Zhang, Photonic Microwave Signal Generation Using an Optically Injected Semiconductor Laser, SPIE/COS Photonics Asia, Beijing, China, Oct. 12-14, 2016. [Invited Talk]

[2] F. Z. Zhang, P. Zhou, B. D. Gao, and S. L. Pan, Multi-frequency optoelectronic oscillators: realization and applications, in the 37th Progress In Electromagnetics Research Symposium (PIERS 2016), 8-11 August, 2016, Shanghai, China. [Invited Talk]