Coherent Optical Modems for Full-Wavefield Lidar
Parsa Mirdehghan, Brandon Buscaino, Maxx Wu, Doug Charlton, Mohammad, E. Mousa-Pasandi, Kiriakos N. Kutulakos, David B. Lindell

TL;DR
This paper introduces a novel full-wavefield lidar system using coherent optical modems, enabling simultaneous measurement of depth, velocity, and polarization with high accuracy and robustness, leveraging existing telecommunications technology.
Contribution
It repurposes off-the-shelf coherent optical modems for full-wavefield lidar, developing a new imaging model and reconstruction algorithm for enhanced sensing capabilities.
Findings
Achieved mm-scale ranging accuracy with microsecond exposures
Demonstrated reliable velocity measurements
Showed robustness against ambient light interference
Abstract
The advent of the digital age has driven the development of coherent optical modems--devices that modulate the amplitude and phase of light in multiple polarization states. These modems transmit data through fiber optic cables that are thousands of kilometers in length at data rates exceeding one terabit per second. This remarkable technology is made possible through near-THz-rate programmable control and sensing of the full optical wavefield. While coherent optical modems form the backbone of telecommunications networks around the world, their extraordinary capabilities also provide unique opportunities for imaging. Here, we repurpose off-the-shelf coherent optical modems to introduce full-wavefield lidar: a type of random modulation continuous wave lidar that simultaneously measures depth, axial velocity, and polarization. We demonstrate this modality by combining a 74 GHz-bandwidth…
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Taxonomy
TopicsAdvanced Optical Sensing Technologies · Advanced Fiber Laser Technologies · Ocular and Laser Science Research
