Focusing of light energy inside a scattering medium by controlling the time-gated multiple light scattering

  • Jeong, Seungwon; 
  • Lee, Ye-Ryoung; 
  • Choi, Wonjun; 
  • Kang, Sungsam; 
  • Hong, Jin Hee; 
  • ... Choi, Wonshik; 
  • 외 3명
Citations

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90
Citations

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98

초록

The efficient delivery of light energy is a prerequisite for the non-invasive imaging and stimulating of target objects embedded deep within a scattering medium. However, the injected waves experience random diffusion by multiple light scattering, and only a small fraction reaches the target object. Here, we present a method to counteract wave diffusion and to focus multiple-scattered waves at the deeply embedded target. To realize this, we experimentally inject light into the reflection eigenchannels of a specific flight time to preferably enhance the intensity of those multiple-scattered waves that have interacted with the target object. For targets that are too deep to be visible by optical imaging, we demonstrate a more than tenfold enhancement in light energy delivery in comparison with ordinary wave diffusion cases. This work will lay a foundation to enhance the working depth of imaging, sensing and light stimulation.

키워드

DISORDERED MEDIA; ADAPTIVE OPTICS; IN-VIVO; REVERSAL; DEEP; TRANSMISSION; MODES
제목
Focusing of light energy inside a scattering medium by controlling the time-gated multiple light scattering
저자
Jeong, Seungwon; Lee, Ye-Ryoung; Choi, Wonjun; Kang, Sungsam; Hong, Jin Hee; Park, Jin-Sung; Lim, Yong-Sik; Park, Hong-Gyu; Choi, Wonshik
DOI
10.1038/s41566-018-0120-9
발행일
2018-05
유형
Article
저널명
Nature Photonics
권
12
호
5
페이지
277 ~ +