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Abdolkhalegh Mohammadi,Erwan Weckenmann,Alireza Geravand et al. Abdolkhalegh Mohammadi et al.
We explore what we believe to be novel methods to improve the spacing and flatness of comb lines in an electro-optic frequency comb using cascaded silicon phase modulators....This demonstration represents the highest repetition rates ever reported for silicon modulators. For instance, such a comb could carry a super-channel signal of up to 300 Gbaud (i.e., 75 Gbaud × 4) per comb line.
Yinpeng Hu,Jiayue Zhu,Ye Lu et al. Yinpeng Hu et al.
Here, we propose a novel silicon photonic MEMS 2 × 2 switch based on horizontal ADCs (HADCs) which is compatible with all mainstream array topologies.
C E Osornio-Martinez,D B Bonneville,I Hegeman et al. C E Osornio-Martinez et al.
These results mark a significant step toward fully integrated rare-earth-ion-doped amplifiers for the next-generation of active-passive photonic integrated circuits compatible with silicon photonics platforms.
Sumanyu Chauhan,Markus Wahle,Dieter Cuypers et al. Sumanyu Chauhan et al.
We demonstrate a simplified reflection-mode setup similar to liquid crystal on silicon (LCoS) technology to evaluate BPLC performance.
Mahmoud A Elrabiaay,Christia Eleftheriou,George Tsekenis et al. Mahmoud A Elrabiaay et al.
We demonstrate a self-referenced plasmonic augmented photonic Mach-Zehnder interferometer (MZI) for biosensing applications, incorporating a 70 µm long aluminum plasmonic waveguide in both arms of a silicon nitride (Si3N4) MZI.
Yang Jiang,Xulin Zhao,Zhewei Zhang et al. Yang Jiang et al.
Our PBS can be easily integrated with other devices on standard silicon photonics platforms, with a good balance of the bandwidth, the device footprint, and the fabrication complexity.
David Hevisov,Florian Foschum,Markus Wagner et al. David Hevisov et al.
Across a range of test materials, from silicon phantoms to everyday media like milk, our results show imperceptible color deviations, with ΔE values consistently below 1.
Kosuke Takada,Ryota Katsumi,Kenta Kawai et al. Kosuke Takada et al.
In this study, we demonstrate alignment-tolerant coupling between diamond and silicon nitride waveguides using the deterministic transfer-printing method. To validate this approach, we also demonstrate the capability of on-chip quantum sensing using nitrogen vacancy centers in diamond waveguides.
Ke Zhang,Guanzhu Zhou,Senlin Zhang et al. Ke Zhang et al.
A total delay of 10.46 ns is achieved using a 0.8-m-long silicon nitride waveguide spiral. The losses of the delay line operating in the TE and TM modes are 0.083 dB/cm and 0.213 dB/cm, respectively.
Ren-Jie Chen,Yeong Hwan Ko,Jae Woong Yoon et al. Ren-Jie Chen et al.
This wavelength separation corresponds to a Raman shift of 15.527 THz, which is close to the nominal Raman shift in silicon at 15.606 THz. The Raman generation experimental results match well with the theoretical analysis of split resonance modes enabled by the angular tuning technique.
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