关注
Daniel Drayss
Daniel Drayss
nstitute of Photonics and Quantum Electronics (IPQ), Karlsruhe Institute of Technology (KIT)
在 kit.edu 的电子邮件经过验证 - 首页
标题
引用次数
引用次数
年份
Optical arbitrary waveform measurement (OAWM) using silicon photonic slicing filters
D Fang, A Zazzi, J Müller, D Drayss, C Füllner, P Marin-Palomo, ...
Journal of Lightwave Technology 40 (6), 1705-1717, 2022
182022
320 GHz analog-to-digital converter exploiting Kerr soliton combs and photonic-electronic spectral stitching
D Fang, D Drayß, G Lihachev, P Marin-Palomo, H Peng, C Füllner, ...
2021 European Conference on Optical Communication (ECOC), 1-4, 2021
172021
Optically enabled ADCs and application to optical communications
A Zazzi, J Müller, M Weizel, J Koch, D Fang, A Moscoso-Mártir, ...
IEEE Open Journal of the Solid-State Circuits Society 1, 209-221, 2021
162021
Optical arbitrary waveform measurement (OAWM) on the silicon photonic platform
D Fang, A Zazzi, J Müller, D Drayß, C Füllner, P Marin-Palomo, ...
Optical Fiber Communication Conference, F2E. 6, 2021
82021
Non-sliced optical arbitrary waveform measurement (OAWM) using soliton microcombs
D Drayss, D Fang, C Füllner, G Lihachev, T Henauer, Y Chen, H Peng, ...
Optica 10 (7), 888-896, 2023
62023
Optical arbitrary waveform generation and measurement (OAWG/OAWM) enabling 320 GBd 32QAM transmission
D Drayss, D Fang, A Sherifaj, H Peng, C Füllner, T Henauer, G Lihachev, ...
CLEO: Science and Innovations, STh5C. 8, 2023
62023
Slice-less optical arbitrary waveform measurement (OAWM) in a bandwidth of more than 600 GHz
D Drayss, D Fang, C Füllner, G Likhachev, T Henauer, Y Chen, H Peng, ...
2022 Optical Fiber Communications Conference and Exhibition (OFC), 1-3, 2022
62022
Slice-less optical arbitrary waveform measurement (OAWM) on a silicon photonic chip
D Drayss, D Fang, C Füllner, A Kuzmin, W Freude, S Randel, C Koos
European Conference and Exhibition on Optical Communication, We4E. 6, 2022
52022
Photonic-eletronic arbitrary waveform generation up to 100 GHz using active phase stabilization
C Füllner, A Sherifaj, T Henauer, D Fang, D Drayss, T Harter, TZ Gutema, ...
CLEO: Science and Innovations, STh5M. 3, 2022
32022
Optical arbitrary waveform generation (OAWG) based on RF injection-locked Kerr soliton combs
D Fang, H Peng, D Drayss, Y Chen, C Füllner, A Sherifaj, G Lihachev, ...
49th European Conference on Optical Communications (ECOC 2023) 2023, 1047-1050, 2023
22023
Slice-Less Optical Arbitrary Waveform Measurement (OAWM) in a Bandwidth of More than 600 GHz Using Soliton Microcombs
D Drayss, D Fang, C Füllner, G Lihachev, T Henauer, Y Chen, H Peng, ...
arXiv preprint arXiv:2303.17964, 2023
12023
160-GBd photonic-electronic PAM transmitter based on IQ multiplexing
C Füllner, A Sherifaj, T Henauer, D Fang, D Drayss, W Freude, C Koos, ...
2022 27th OptoElectronics and Communications Conference (OECC) and 2022 …, 2022
12022
Spectrally Sliced Optical Arbitrary Waveform Measurement (OAWM) Using a Photonic Multi-Chip Receiver Assembly
D Fang, D Drayss, Y Chen, M Lauermann, H Peng, G Lihachev, A Quint, ...
Optical Fiber Communication Conference, Tu2A. 4, 2024
2024
Integrated Non-sliced OAWM Engine Enabling 320 GHz Photonic-Electronic Analog-to-Digital Conversion
D Drayss, D Fang, A Quint, L Valenziano, M Lauermann, G Lihachev, ...
Optical Fiber Communication Conference, W3B. 4, 2024
2024
Non-sliced Optical Arbitrary Waveform Measurement (OAWM) Using a Silicon Photonic Receiver Chip
D Drayss, D Fang, C Füllner, W Freude, S Randel, C Koos
Journal of Lightwave Technology, 2024
2024
系统目前无法执行此操作,请稍后再试。
文章 1–15