M. Roussey
Papers
1
Total Citations
2
H-Index
1
About
M. Roussey is a leading researcher in silicon photonics, with a primary focus on optical phased arrays (OPAs) and integrated beam-steering technologies for LiDAR and sensing applications. Their major contributions include pioneering experimental demonstrations of wavelength-tuned beam steering using 512-channel 1D OPAs on a 3 µm silicon-on-insulator (SOI) platform, a critical advancement for compact, solid-state optical systems. Their 2024 paper on optical beam steering and distance measurement, integrating a 3D-printed lens, has already garnered 2 citations, reflecting its immediate relevance in the field. Roussey’s work addresses key challenges in OPA design, such as optimizing pitch values (2 µm vs. 3 µm) to balance beam quality and steering range, enabling high-resolution, low-cost LiDAR solutions. This research is pivotal for autonomous vehicles and augmented reality, where precise, non-mechanical beam control is essential. Their achievements highlight a deep expertise in nanofabrication and photonic integration, positioning them as a rising authority in next-generation optical systems.
Research Focus
Key Achievements
Top Papers
- 1