Continuous-streaming high-speed two-photon dual-comb LiDAR with free-running lasers
Abstract
Dual-comb distance metrology combines sub-um precision with absolute distance measurement over meter-scale non-ambiguity ranges. The most common interferometric implementation requires sophisticated approaches to achieve continuous streaming due to the need for digitization at near-gigasample/s rates. Here, we exploit the naturally low data burden of two-photon dual-comb LiDAR to demonstrate continuously-streamed distance metrology at 11.5 kHz, reaching a precision of nearly 1 um in an averaging time of 10 ms. Using free-running 500 MHz Er,Yb:glass femtosecond lasers we achieve sampling rates >10 kHz, sufficient to demonstrate the capture of a four-minute audio track from the displacement of a loudspeaker-mounted mirror. The ability to perform high-speed yet low-data-burden distance metrology using unstabilized lasers presents exciting opportunities for diverse applications in industrial machine-tool control and calibration.
Cite
@article{arxiv.2603.07741,
title = {Continuous-streaming high-speed two-photon dual-comb LiDAR with free-running lasers},
author = {Benjamin H. Forman and Hollie Wright and Hanna Ostapenko and Derryck T. Reid},
journal= {arXiv preprint arXiv:2603.07741},
year = {2026}
}
Comments
Submitted for publication. In peer review