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Hybrid Junction-Enabled Biomimetic Human Eye Structure for Large Dynamic Range Vision Sensor
by
Han, Yuanfan
, Xie, Weiguang
, Lu, Yueheng
, Zhan, Zhenye
, Chen, Qiulan
, Chen, Daqi
, Zhou, Yang
, Weng, Zhendong
, Chen, Jian
in
Adaptation
/ Biomimetics
/ Chemical vapor deposition
/ Computer vision
/ Crystals
/ Dynamic range
/ Eye
/ Eye (anatomy)
/ heterojunction
/ Heterojunctions
/ Lasers
/ Light intensity
/ Luminous intensity
/ Machine vision
/ Morphology
/ photodiode
/ Photometers
/ Retina
/ Retinal cells
/ Sensors
/ Vanadium oxides
/ vision sensor
/ Vision systems
/ VO2
/ Web services
/ WSe2
2026
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Hybrid Junction-Enabled Biomimetic Human Eye Structure for Large Dynamic Range Vision Sensor
by
Han, Yuanfan
, Xie, Weiguang
, Lu, Yueheng
, Zhan, Zhenye
, Chen, Qiulan
, Chen, Daqi
, Zhou, Yang
, Weng, Zhendong
, Chen, Jian
in
Adaptation
/ Biomimetics
/ Chemical vapor deposition
/ Computer vision
/ Crystals
/ Dynamic range
/ Eye
/ Eye (anatomy)
/ heterojunction
/ Heterojunctions
/ Lasers
/ Light intensity
/ Luminous intensity
/ Machine vision
/ Morphology
/ photodiode
/ Photometers
/ Retina
/ Retinal cells
/ Sensors
/ Vanadium oxides
/ vision sensor
/ Vision systems
/ VO2
/ Web services
/ WSe2
2026
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Hybrid Junction-Enabled Biomimetic Human Eye Structure for Large Dynamic Range Vision Sensor
by
Han, Yuanfan
, Xie, Weiguang
, Lu, Yueheng
, Zhan, Zhenye
, Chen, Qiulan
, Chen, Daqi
, Zhou, Yang
, Weng, Zhendong
, Chen, Jian
in
Adaptation
/ Biomimetics
/ Chemical vapor deposition
/ Computer vision
/ Crystals
/ Dynamic range
/ Eye
/ Eye (anatomy)
/ heterojunction
/ Heterojunctions
/ Lasers
/ Light intensity
/ Luminous intensity
/ Machine vision
/ Morphology
/ photodiode
/ Photometers
/ Retina
/ Retinal cells
/ Sensors
/ Vanadium oxides
/ vision sensor
/ Vision systems
/ VO2
/ Web services
/ WSe2
2026
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Hybrid Junction-Enabled Biomimetic Human Eye Structure for Large Dynamic Range Vision Sensor
Journal Article
Hybrid Junction-Enabled Biomimetic Human Eye Structure for Large Dynamic Range Vision Sensor
2026
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Overview
The responsive light intensity dynamic range (DR) of the human eye far exceeds that of existing visual systems, and the development of a biomimetic retinal detecting unit is currently an important challenge in the field of machine vision. Here, a two-terminal Au-contacted VO
/WSe
heterojunction photodetector with the same adaptive DR as retinal cells is developed. It is revealed that the VO
/WSe
heterojunction part-mimics the cone cell for strong light detection with photoresponsivity (R) of 320 mA W
and the Au/WSe
Schottky contact part-mimics the rod cell for weak light detection with an R of 217 A W
and noise equivalent power (NEP) as low as 248.2 fW/√Hz. The dual-mode photodetector shows a fast response speed of less than 39.28 μs. Image fusion by the cone mode and rod mode shows enhanced recognition. These results demonstrate that contact engineering enables a photodetector with the functionality of both rod and cone cells, and the resulting visual imaging system can achieve performance comparable to that of the human eye in certain operating conditions.
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