English

Sub-Nyquist sampling boosts targeted light transport through opaque scattering media

Biological Physics 2016-11-07 v1 Optics

Abstract

Optical time-reversal techniques are being actively developed to focus light through or inside opaque scattering media. When applied to biological tissue, these techniques promise to revolutionize biophotonics by enabling deep-tissue non-invasive optical imaging, optogenetics, optical tweezers and photodynamic therapy. In all previous optical time-reversal experiments, the scattered light field was well-sampled during wavefront measurement and wavefront reconstruction, following the Nyquist sampling criterion. Here, we overturn this conventional practice by demonstrating that even when the scattered field is under-sampled, light can still be focused through or inside opaque media. Even more surprisingly, we show both theoretically and experimentally that the focus achieved by under-sampling is usually about one order of magnitude brighter than that achieved by conventional well-sampling conditions. Moreover, sub-Nyquist sampling improves the signal-to-noise ratio and the collection efficiency of the scattered light. We anticipate that this newly explored under-sampling scheme will transform the understanding of optical time reversal and boost the performance of optical imaging, manipulation, and communication through opaque scattering media.

Keywords

Cite

@article{arxiv.1611.01404,
  title  = {Sub-Nyquist sampling boosts targeted light transport through opaque scattering media},
  author = {Yuecheng Shen and Yan Liu and Cheng Ma and Lihong V. Wang},
  journal= {arXiv preprint arXiv:1611.01404},
  year   = {2016}
}

Comments

6 pages, 5 pages

R2 v1 2026-06-22T16:42:17.524Z