Tobias J. Kippenberg
Papers
3
Total Citations
116
H-Index
3
About
Tobias J. Kippenberg is a pioneering researcher at the forefront of integrated photonics and optical frequency comb technology, with a particular focus on microresonator-based optical combs — commonly known as microcombs — and their transformative applications in precision sensing and ranging. His work has significantly advanced the field of coherent LiDAR (Light Detection and Ranging), demonstrating how microcomb architectures can overcome fundamental limitations of conventional time-of-flight approaches by offering immunity to ambient light interference and enabling continuous-wave operation at higher average powers. Kippenberg's most celebrated contributions include the development of dual chirped microcomb-based parallel ranging systems capable of achieving megapixel-line acquisition rates, a breakthrough that has garnered 88 citations since its 2022 publication. He has further pushed these boundaries by pioneering chaotic microcomb-based inertia-free parallel ranging, eliminating the need for moving mechanical parts — a critical advance for applications in autonomous driving, augmented reality, and robotics. His research directly addresses the growing demand for solid-state beam scanning solutions, positioning photonic integrated sensing as a viable path toward next-generation imager systems. Through consistent innovation across these domains, Kippenberg has established himself as a key architect of modern photonic sensing technology.
Research Focus
Key Achievements
Top Papers
- 1Dual chirped microcomb based parallel ranging at megapixel-line rates88 citations · 2022
- 2Chaotic microcomb inertia-free parallel ranging24 citations · 2023
- 3Chaotic microcomb inertia-free parallel ranging4 citations · 2022