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Hetero-integration enables fast switching time-of-flight sensors for light detection and rangingoa mark
  • Park, Minseong ;
  • Baek, Yongmin ;
  • Dinare, Mesgana ;
  • Lee, Doeon ;
  • Park, Kyung Ho ;
  • Ahn, Jungho ;
  • Kim, Dahee ;
  • Medina, Joseff ;
  • Choi, Won Jin ;
  • Kim, Sihwan ;
  • Zhou, Changjie ;
  • Heo, Junseok ;
  • Lee, Kyusang
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Publication Year
2020-12-01
Publisher
Nature Research
Citation
Scientific Reports, Vol.10
All Science Classification Codes (ASJC)
Multidisciplinary
Abstract
The time-of-flight (ToF) principle is a method used to measure distance and construct three-dimensional (3D) images by detecting the time or the phase difference between emitted and back-reflected optical flux. The ToF principle has been employed for various applications including light ranging and detection (LiDAR), machine vision and biomedical engineering; however, bulky system size and slow switching speed have hindered the widespread application of ToF technology. To alleviate these issues, a demonstration of hetero-integration of GaN-based high electron mobility transistors (HEMTs) and GaAs-based vertical cavity surface emitting lasers (VCSELs) on a single platform via a cold-welding method was performed. The hetero-integrated ToF sensors show superior switching performance when compared to silicon-transistor-based systems, miniaturizing size and exhibiting stable ranging and high-resolution depth-imaging. This hetero-integrated system of dissimilar material-based high-performance devices suggests a new pathway towards enabling high-resolution 3D imaging and inspires broader range application of heterogeneously integrated electronics and optoelectronics.
ISSN
2045-2322
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/31157
DOI
https://doi.org/10.1038/s41598-020-59677-x
Fulltext

Type
Article
Funding
This work was supported by the GRRC program of Gyeonggi province. (GRRC-Ajou 2016B01, Photonics-Medical Convergence Technology).
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