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Mimicking Melanopsin Behavior with Integrated Photoregulated Memory

机译:用集成的光电记忆模仿黑色素行为

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摘要

Melanopsin is an essential element in the human eye, sensing optical light, indeed beyond the function of rods and cones, and contributing largely to non-image-forming functions like learning behavior, emotions, and maintaining sun cycle. Mimicking melanopsin behavior using an optoelectronic device could be an essential step toward the advancement of future technologies, including data storage applications and artificial vision. This research proposes and illustrates the mimicking of the primitive functions of melanopsin in a manner very similar to the human eye retina by using an integrated Schottky photodetector and an HfO2-based memory device. Particularly, current-voltage curves show nominal hysteresis loop opening under dark conditions, whereas stable analog hysteresis loops form with light illumination, which is regulated progressively by increasing the intensity. Based on photoconductive atomic force microscopy and charge transport measurements, the charge trapping/detrapping is estimated to be associated with the light-regulated hysteresis loop opening. Specifically, versatile synaptic functions are stimulated artificially with an optical pulse, which is sustained over a long period of time even after removing the light, indeed very similar to melanopsin behavior. The optically regulated properties described herein pave the way for the development of artificial optoelectronic melanopsin, artificial biological electronics, soft robotics, and data storage applications.
机译:黑色素是人眼中的一个基本元素,感测光学光,确实超出了杆和锥体的功能,并且主要促进了学习行为,情绪和维护太阳循环等非图像形成的功能。使用光电器件模仿黑色素行为可能是推进未来技术的重要步骤,包括数据存储应用和人工视觉。该研究提出并说明了通过使用集成的肖特基光电探测器和基于HFO2的存储器件与人眼视网膜非常相似的方式模拟黑色素的原始函数。特别地,电流电压曲线在暗条件下显示标称磁滞回路开口,而稳定的模磁滞后环与光照射的形式,这通过增加强度逐渐调节。基于光导原子力显微镜和电荷传输测量,估计电荷俘获/脱击与光调节滞后环开口相关联。具体地,多功能突触函数用光学脉冲人工刺激,光学脉冲即使在去除光之后也长时间持续,实际上非常类似于黑色素行为。本文所述的光学调节性质铺平了人工光电子蛋白,人工生物电子,软机器人和数据存储应用的发展方式。

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