Dr. Huanfa Peng
- Room: 2.32/2
- Phone: +49 721 608-42480
- huanfa peng ∂ kit edu
Engesserstr. 5
76131 Karlsruhe
Germany
Curriculum Vitae - Huanfa Peng
Position: Research Assistant
With this Institute since: 08/2020
Degrees: PhD in Eletrical Engeneering
Graduation: 2017, Peking University, China
Present Research Interests:
Kerr soliton frequency comb and its applications
Publications
Journal Articles
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Hossain Adib, M. M.; Füllner, C.; Peng, H.; Koos, C.; Freude, W.; Randel, S. (2024). Coherent time- and wavelength-division multiplexed point-to-multipoint optical access network using low-cost DFB lasers enabled by a frequency comb. Optics Express, 32 (22), 38516–38530. doi:10.1364/OE.531344
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Gasmi, E.; Peng, H.; Koos, C.; Reichel, W. (2023). Bandwidth and conversion-efficiency analysis of Kerr soliton combs in dual-pumped resonators with anomalous dispersion. Physical Review A, 108 (2), Art.Nr.: 023505. doi:10.1103/PhysRevA.108.023505
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Drayss, D.; Fang, D.; Füllner, C.; Lihachev, G.; Henauer, T.; Chen, Y.; Peng, H.; Marin-Palomo, P.; Zwick, T.; Freude, W.; Kippenberg, T. J.; Randel, S.; Koos, C. (2023). Non-sliced optical arbitrary waveform measurement (OAWM) using soliton microcombs. Optica, 10 (7), 888–896. doi:10.1364/OPTICA.484200
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Maier, P.; Chen, Y.; Xu, Y.; Bao, Y.; Blaicher, M.; Geskus, D.; Dekker, R.; Liu, J.; Dietrich, P.-I.; Peng, H.; Randel, S.; Freude, W.; Kippenberg, T. J.; Koos, C. (2023). Sub-kHz-linewidth external-cavity laser (ECL) with Si
N resonator used as a tunable pump for a Kerr frequency comb. Journal of Lightwave Technology, 41 (11), 3479–3490. doi:10.1109/JLT.2023.3243471 -
Xu, Y.; Maier, P.; Blaicher, M.; Dietrich, P.-I.; Marin-Palomo, P.; Hartmann, W.; Bao, Y.; Peng, H.; Billah, M. R.; Singer, S.; Troppenz, U.; Moehrle, M.; Randel, S.; Freude, W.; Koos, C. (2021). Hybrid external-cavity lasers (ECL) using photonic wire bonds as coupling elements. Scientific reports, 11 (1), Art.-Nr. 16426. doi:10.1038/s41598-021-95981-w
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Peng, H.; Lei, P.; Xie, X.; Chen, Z. (2021). Dynamics and timing-jitter of regenerative RF feedback assisted resonant electro-optic frequency comb. Optics Express, 29 (26), 42435–42456. doi:10.1364/OE.440621
Conference Papers
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Drayss, D.; Fang, D.; Quint, A.; Valenziano, L.; Lauermann, M.; Lihachev, G.; Chen, Y.; Peng, H.; Randel, S.; Zwick, T.; Freude, W.; Kippenberg, T. J.; Koos, C. (2024). Integrated Non-sliced OAWM Engine Enabling 320 GHz Photonic-Electronic Analog-to-Digital Conversion. 2024 Optical Fiber Communications Conference and Exhibition (OFC), 1–3, IEEEXplore.
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Peng, H.; Chen, Y.; Lopez, I. R.; Lihachev, G.; Tian, H.; Voloshin, A.; Riemensberger, J.; Maier, P.; Skacel, S.; Lauermann, M.; Attanasio, A.; Randel, S.; Freude, W.; Bhave, S.; Kippenberg, T. J.; Koos, C. (2024). Low-Phase-Noise Frequency-Agile Hybrid Integrated Laser Offering Highly Linear Tuning for FMCW LiDAR. CLEO: Science and Information: Part of Conference on Lasers & Electro-Optics,Charlotte, North Carolina United States, 5–10 May 2024, Art.-Nr.: SM2M.1, Optica Publishing Group (OSA). doi:10.1364/CLEO_SI.2024.SM2M.1
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Fang, D.; Drayss, D.; Chen, Y.; Lauermann, M.; Peng, H.; Lihachev, G.; Quint, A.; Valenziano, L.; Randel, S.; Zwick, T.; Freude, W.; Kippenberg, T. J.; Koos, C. (2024). Spectrally Sliced Optical Arbitrary Waveform Measurement (OAWM) Using a Photonic Multi-Chip Receiver Assembly. 2024 Optical Fiber Communications Conference and Exhibition (OFC), 1–3, Institute of Electrical and Electronics Engineers (IEEE).
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Fang, D.; Peng, H.; Drayss, D.; Chen, Y.; Füllner, C.; Sherifaj, A.; Lihachev, G.; Freude, W.; Randel, S.; Kippenberg, T. J.; Zwick, T.; Koos, C. (2023). Optical arbitrary waveform generation (OAWG) based on RF injection-locked Kerr soliton combs. 49th European Conference on Optical Communications (ECOC 2023), Glasgow, 1st-5th October 2024, 1047–1050, Institution of Engineering and Technology (IET). doi:10.1049/icp.2023.2431
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Chen, Y.; Peng, H.; Fang, D.; Dittmer, J.; Lihachev, G.; Voloshin, A.; Skacel, S. T.; Lauermann, M.; Tessmann, A.; Wagner, S.; Bhave, S.; Kallfass, I.; Zwick, T.; Freude, W.; Randel, S.; Kippenberg, T. J.; Koos, C. (2023). Self-Injection-Locked Kerr Soliton Microcombs With Photonic Wire Bonds For Use in Terahertz Communications. CLEO: Science and Innovations 2023, San Jose, CA United States, 7th–12th May 2023, STh3J.1, Optica Publishing Group (OSA). doi:10.1364/CLEO_SI.2023.STh3J.1
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Chen, Y.; Lihachev, G.; Peng, H.; Tian, H.; Fang, D.; Voloshin, A.; Riemensberger, J.; Maier, P.; Skacel, S. T.; Lauermann, M.; Attanasio, A.; Randel, S.; Freude, W.; Bhave, S.; Kippenberg, T. J.; Koos, C. (2023). Frequency-Agile Self-Injection-Locked Lasers With sub-100 Hz Linewidth based on In-Package Photonic Wire Bonds. CLEO: Science and Innovations 2023, STu4P.4, Optica Publishing Group (OSA).
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Drayss, D.; Fang, D.; Sherifaj, A.; Peng, H.; Füllner, C.; Henauer, T.; Lihachev, G.; Freude, W.; Randel, S.; Kippenberg, T.; Zwick, T.; Koos, C. (2023). Optical arbitrary waveform generation and measurement (OAWG/OAWM) enabling 320 GBd 32QAM transmission. Conference on Lasers and Electro-Optics (2023).
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Maier, P.; Chen, Y.; Xu, Y.; Blaicher, M.; Geskus, D.; Dekker, R.; Liu, J.; Dietrich, P.-I.; Peng, H.; Randel, S.; Freude, W.; Kippenberg, T. J.; Koos, C. (2022). InP/Si
N Hybrid External-Cavity Laser With sub-kHz Linewidth Acting as a Pump Source for Kerr Frequency Combs. European Conference on Optical Communication (ECOC 2022), Basel, Switzerland, Sept. 18-22 2022, Art.-Nr.: We2E.4, Optica Publishing Group (OSA). -
Drayss, D.; Fang, D.; Füllner, C.; Likhachev, G.; Henauer, T.; Chen, Y.; Peng, H.; Marin-Palomo, P.; Zwick, T.; Freude, W.; Kippenberg, T. J.; Randel, S.; Koos, C. (2022). Slice-Less Optical Arbitrary Waveform Measurement (OAWM) in a Bandwidth of More Than 600 GHz. Proceedings Optical Fiber Communication Conference (OFC) 2022, 6–10 March 2022, San Diego, California, United States, Art.-Nr.: M2I.1, Optica Publishing Group (OSA). doi:10.1364/OFC.2022.M2I.1
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Fang, D.; Drayss, D.; Lihachev, G.; Marin-Palomo, P.; Peng, H.; Fullner, C.; Kuzmin, A.; Liu, J.; Wang, R.; Snigirev, V.; Lukashchuk, A.; Zhang, M.; Kharel, P.; Witzens, J.; Scheytt, C.; Freude, W.; Randel, S.; Kippenberg, T. J.; Koos, C. (2021). 320 GHz Analog-to-Digital Converter Exploiting Kerr Soliton Combs and Photonic-Electronic Spectral Stitching. 2021 European Conference on Optical Communication (ECOC), Institute of Electrical and Electronics Engineers (IEEE). doi:10.1109/ECOC52684.2021.9606090
Reports/Preprints
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Drayss, D.; Fang, D.; Füllner, C.; Lihachev, G.; Henauer, T.; Chen, Y.; Peng, H.; Marin-Palomo, P.; Zwick, T.; Freude, W.; Kippenberg, T. J.; Randel, S.; Koos, C. (2023). Slice-Less Optical Arbitrary Waveform Measurement (OAWM) in a Bandwidth of More than 600 GHz Using Soliton Microcombs. arxiv. doi:10.48550/arXiv.2303.17964
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Gasmi, E.; Peng, H.; Koos, C.; Reichel, W. (2022). Bandwidth and conversion-efficiency analysis of Kerr soliton combs in dual-pumped resonators with anomalous dispersion. Karlsruher Institut für Technologie (KIT). doi:10.5445/IR/1000151944
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Maier, P.; Chen, Y.; Xu, Y.; Bao, Y.; Blaicher, M.; Geskus, D.; Dekker, R.; Liu, J.; Dietrich, P. I.; Peng, H.; Randel, S.; Freude, W.; Kippenberg, T. J.; Koos, C. (2022). Sub-kHz-linewidth external-cavity laser (ECL) with Si3N4 resonator used as a tunable pump for a Kerr frequency comb. doi:10.48550/arXiv.2211.06040
Presentations
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Drayss, D.; Fang, D.; Quint, A.; Valenziano, L.; Lauermann, M.; Lihachev, G.; Chen, Y.; Peng, H.; Randel, S.; Zwick, T.; Freude, W.; Kippenberg, T. J.; Koos, C. (2024, March 27). Integrated Non-sliced OAWM Engine Enabling 320 GHz Photonic-Electronic Analog-to-Digital Conversion. Optical Fiber Communications Conference and Exhibition (OFC 2024), San Diego, CA, USA, March 24–28, 2024.
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Fang, D.; Drayss, D.; Chen, Y.; Lauermann, M.; Peng, H.; Lihachev, G.; Quinte, A.; Valenziano, L.; Randel, S.; Zwick, T.; Freude, W.; Kippenberg, T. J.; Koos, C. (2024, March 26). Spectrally Sliced Optical Arbitrary Waveform Measurement (OAWM) Using a Photonic Multi-Chip Receiver Assembly. Optical Fiber Communications Conference and Exhibition (OFC 2024), San Diego, CA, USA, March 24–28, 2024.