DOE OSTI · 2203768
Learning diffractive optical communication around arbitrary opaque occlusions
Abstract
Abstract Free-space optical communication becomes challenging when an occlusion blocks the light path. Here, we demonstrate a direct communication scheme, passing optical information around a fully opaque, arbitrarily shaped occlusion that partially or entirely occludes the transmitter’s field-of-view. In this scheme, an electronic neural network encoder and a passive, all-optical diffractive network-based decoder are jointly trained using deep learning to transfer the optical information of interest around the opaque occlusion of an arbitrary shape. Following its training, the encoder-decoder pair can communicate any arbitrary optical information around opaque occlusions, where the information decoding occurs at the speed of light propagation through passive light-matter interactions, with resilience against various unknown changes in the occlusion shape and size. We also validate this framework experimentally in the terahertz spectrum using a 3D-printed diffractive decoder. Scalable for operation in any wavelength regime, this scheme could be particularly useful in emerging high data-rate free-space communication systems.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Rahman, Md Sadman Sakib, Gan, Tianyi (ORCID:0000000186750053), Deger, Emir Arda (ORCID:0009000229693309), Işıl, Çağatay (ORCID:0000000333671858), Jarrahi, Mona (ORCID:000000019514555X), Ozcan, Aydogan (ORCID:000000020717683X). 2023-10-26. Learning diffractive optical communication around arbitrary opaque occlusions. https://doi.org/10.1038/s41467-023-42556-0
Cite the original work for its findings. Save a collection to share your selection of sources.