Yannick Salamin
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Publications 1 - 10 of 39
- Plasmonics in Silicon Photonics for Microwave PhotonicsItem type: Conference Paper
META ~ META 2019 Lisbon - Portugal: The 10th International Conference on Metamaterials, Photonic Crystals and Plasmonics: ProceedingsSalamin, Yannick; Heni, Wolfgang; Ma, Ping; et al. (2019) - Transparent Optical-THz-Optical Link Transmission over 5/115 m at 240/190 Gbit/s Enabled by PlasmonicsItem type: Conference Paper
OSA Technical Digest ~ Optical Fiber Communication Conference (OFC) 2021Horst, Yannik Matthias Julius; Blatter, Tobias; Kulmer, Laurenz; et al. (2021)The first transparent Optical-THz-Optical link providing record-high line-rates up to 240 and 190 Gbit/s over distances from 5 to 115m is demonstrated. The link is based on direct data-conversion from optical to sub-THz and vice-versa. - Plasmonic modulators and photodetectors for communicationsItem type: Conference Paper
Proceedings of SPIE ~ Broadband Access Communication Technologies XVMa, Ping; Salamin, Yannick; Messner, Andreas; et al. (2021)Plasmonics has emerged as a promising technological solution for realizing high-performance nanoscale communication photonic devices. This paper reports our recent advances on high-performance plasmonic modulators and photodetectors. - Sub-micron Plasmonic Waveguide ResonatorItem type: Conference Paper
OSA Technical Digest ~ Conference on Lasers and Electro-OpticsMa, Ping; Zhang, Xinzhi; Salamin, Yannick; et al. (2020)An ultra-compact plasmonic resonator is experimentally demonstrated. The presented sub-gm long inline waveguide-coupled plasmonic resonator features a resonance around 1550 nm with a measured loaded quality factor of 20. - 300 GHz Plasmonic MixerItem type: Conference Paper
2019 International Topical Meeting on Microwave Photonics (MWP)Salamin, Yannick; Blatter, Tobias; Horst, Yannik Matthias Julius; et al. (2019) - All-Plasmonic 100 GBd Optical Communication LinkItem type: Conference Paper
OSA Technical Digest ~ Proceedings of the 2019 Conference on Lasers and Electro-Optics (CLEO)Salamin, Yannick; Ma, Ping; Bäuerle, Benedikt; et al. (2019) - Electro-optic interface for ultrasensitive intracavity electric field measurements at microwave and terahertz frequenciesItem type: Journal Article
OpticaBenea-Chelmus, Ileana-Cristina; Salamin, Yannick; Settembrini, Francesca Fabiana; et al. (2020) - Sub-fJ/Bit Operation of 100 GBd Plasmonic IQ ModulatorsItem type: Conference Paper
OSA Technical Digest ~ 2019 Optical Fiber Communications Conference and Exhibition (OFC)Heni, Wolfgang; Fedoryshyn, Yuriy; Bäuerle, Benedikt; et al. (2019) - Dual sideband receiver for radio-over-fiberItem type: Journal Article
Optics ExpressHorst, Yannik Matthias Julius; Blatter, Tobias; Kulmer, Laurenz; et al. (2024)A dual sideband reception scheme for radio-over fiber (RoF) links is introduced. It is shown that the new receiver can increase the performance of noise-limited systems by up to 3 dB (2.97 dB in a lab back-to-back experiment). The receiver scheme exploits the fact that current RoF links do not realize their full potential. This is because in typical RoF receivers, the radio-frequency (RF) signals are mapped back to the optical domain by means of electro-optical modulator. In this process energy typically is lost as only one of the two generated sidebands is subsequently used. The suggested receiver exploits the signal of both sidebands. The receiver scheme was subsequently tested in a full optical-RF-optical transmission link at RF carrier frequencies of 228 GHz over a free-space channel spanning distances of 1400 m for symbol rates of up to 48 Gbaud 4 QAM. Here, we could achieve SNR improvements of up to 2.6 dB. - High-speed CMOS-compatible III-V on Si membrane photodetectorsItem type: Journal Article
Optics ExpressBaumgartner, Yannick; Caimi, Daniele; Sousa, Marilyne; et al. (2021)The monolithic integration of power-efficient optoelectronic devices with CMOS circuits is critical for future on-chip optical communication. In such platforms, ultra-high-speed photodetectors operating at datacom wavelengths are essential to convert optical signals in the electrical domain. Here, we demonstrate ultra-compact high-speed III-V/Si photodetectors integrated on silicon photonics and exclusively fabricated with processes and materials compatible with CMOS foundries. The sub-femtofarad capacitance, high responsivity photodetectors demonstrate a bandwidth around 65 GHz and data reception at 100 GBd OOK. Their thickness and efficiency enable an integration in the back-end-of-line without using an amplifier, further reducing the power consumption of the link. © 2020 Optical Society of America
Publications 1 - 10 of 39