Silicon-Based On-Chip Electrically-Tunable Spectral Shaper for Continuously Tunable Linearly Chirped Microwave Waveform Generation
暂无分享,去创建一个
[1] Nan-Wei Chen,et al. Photonic Generation and Wireless Transmission of Linearly/Nonlinearly Continuously Tunable Chirped Millimeter-Wave Waveforms With High Time-Bandwidth Product at W-Band , 2012, IEEE Photonics Journal.
[2] Wei Shi,et al. Lithography simulation for the fabrication of silicon photonic devices with deep-ultraviolet lithography , 2012, The 9th International Conference on Group IV Photonics (GFP).
[3] W. J. Bradford,et al. Digital generation of high time-bandwidth product linear FM waveforms for radar altimeters , 1992 .
[4] A. W. Rihaczek. Principles of high-resolution radar , 1969 .
[5] Weifeng Zhang,et al. Silicon-Based Integrated Microwave Photonics , 2016, IEEE Journal of Quantum Electronics.
[6] B. Kang,et al. Linear frequency modulation of voltage-controlled oscillator using delay-line feedback , 2005 .
[7] Yongwoo Park,et al. Fiber-Based Photonic Generation of High-Frequency Microwave Pulses With Reconfigurable Linear Chirp Control , 2010, IEEE Transactions on Microwave Theory and Techniques.
[8] Yun Wang,et al. Universal grating coupler design , 2013, Other Conferences.
[9] Hongwei Chen,et al. A simple photonic generation of linearly chirped microwave pulse with large time-bandwidth product and high compression ratio. , 2013, Optics express.
[10] Jianping Yao,et al. Large Time-Bandwidth Product Microwave Arbitrary Waveform Generation Using a Spatially Discrete Chirped Fiber Bragg Grating , 2010, Journal of Lightwave Technology.
[11] Jianping Yao,et al. Photonic Generation of Continuously Tunable Chirped Microwave Waveforms Based on a Temporal Interferometer Incorporating an Optically Pumped Linearly Chirped Fiber Bragg Grating , 2011, IEEE Transactions on Microwave Theory and Techniques.
[12] A. Zeitouny,et al. Optical generation of linearly chirped microwave pulses using fiber Bragg gratings , 2005, IEEE Photonics Technology Letters.
[13] José Capmany,et al. Integrated microwave photonics , 2019, Nature Photonics.
[14] J. Klauder,et al. The theory and design of chirp radars , 1960 .
[15] Jianping Chen,et al. Generation of a widely tunable linearly chirped microwave waveform based on spectral filtering and unbalanced dispersion. , 2015, Optics letters.
[16] Nicolas A. F. Jaeger,et al. 2×2 adiabatic 3-dB coupler on silicon-on-insulator rib waveguides , 2013, Other Conferences.
[17] Minghao Qi,et al. Ultrabroad-bandwidth arbitrary radiofrequency waveform generation with a silicon photonic chip-based spectral shaper , 2010 .
[18] Weifeng Zhang,et al. Photonic Generation of Linearly Chirped Microwave Waveforms Using a Silicon-Based On-Chip Spectral Shaper Incorporating Two Linearly Chirped Waveguide Bragg Gratings , 2015, Journal of Lightwave Technology.
[19] D. K. Barton,et al. Radar system analysis and modeling , 2004, IEEE Aerospace and Electronic Systems Magazine.
[20] J. McKinney,et al. Millimeter-wave arbitrary waveform generation with a direct space-to-time pulse shaper. , 2002, Optics letters.
[21] Jianping Yao,et al. Photonic generation of microwave arbitrary waveforms , 2011, 16th Opto-Electronics and Communications Conference.
[22] Weifeng Zhang,et al. Photonic generation of linearly chirped microwave waveform with a large time-bandwidth product using a silicon-based on-chip spectral shaper , 2015, 2015 International Topical Meeting on Microwave Photonics (MWP).
[23] Andrew M. Weiner,et al. Photonic Radio-Frequency Arbitrary Waveform Generation With Maximal Time-Bandwidth Product Capability , 2014, Journal of Lightwave Technology.