Kumar Mohit, Park Hayoung, Seo Hyungtak
Department of Materials Science and Engineering, Ajou University, Suwon, 16499, Republic of Korea.
Department of Energy Systems Research, Ajou University, Suwon, 16499, Republic of Korea.
Adv Mater. 2025 Jan;37(1):e2406607. doi: 10.1002/adma.202406607. Epub 2024 Aug 22.
The increasing demand for energy-efficient, sophisticated optical sensing technologies in various applications, from machine vision to optical communication, highlights the necessity for innovations in spatiotemporal information sensing and processing at a nearly single-pixel scale. Traditional methods, including multi-pixel photodetector arrays and event-based camera systems, often fail to provide rapid, real-time detection and processing of dynamic events within the sensor. This shortcoming is particularly notable in handling high-dimensional spatiotemporal data, where the dependency on sequential data input and external processing tools leads to latency, reduced throughput, and heightened energy consumption, thereby impeding real-time parallel data processing capabilities. Here, a carrier-selective, single-pixel, position-sensitive planar photoactive device that integrates spatiotemporal event sensing with inherent short-term memory capabilities is introduced. The proof-of-concept single-pixel event photoactive device enables in-sensor spatiotemporal parallel optical information processing, efficiently managing multibit (>4 bit) data simultaneously and facilitating ultrafast (≈0.4 µs) recognition of input patterns with low energy consumption (25 femtojoules). Additionally, by adjusting the operating speed from continuous to pulsed light illumination, the sensor array can detect trajectories and absolute position of events, offering in-sensor optical flow detection. This single-pixel event photodetector marks significant advancement toward developing compact, energy-efficient, ultrafast sensors suitable for a wide range of in sensor-based photonic applications.
从机器视觉到光通信等各种应用中,对节能、先进的光学传感技术的需求日益增长,这凸显了在近乎单像素尺度上进行时空信息传感和处理创新的必要性。包括多像素光电探测器阵列和基于事件的相机系统在内的传统方法,往往无法在传感器内对动态事件进行快速、实时的检测和处理。在处理高维时空数据时,这一缺点尤为明显,因为对顺序数据输入和外部处理工具的依赖会导致延迟、吞吐量降低和能耗增加,从而阻碍实时并行数据处理能力。在此,介绍一种集成了时空事件传感与固有短期记忆能力的载流子选择性、单像素、位置敏感平面光活性器件。这种概念验证的单像素事件光活性器件能够在传感器内进行时空并行光学信息处理,同时高效管理多位(>4位)数据,并以低能耗(25飞焦耳)促进对输入模式的超快(≈0.4微秒)识别。此外,通过将操作速度从连续光照明调整为脉冲光照明,传感器阵列可以检测事件的轨迹和绝对位置,实现传感器内的光流检测。这种单像素事件光电探测器标志着在开发适用于广泛基于传感器的光子应用的紧凑、节能、超快传感器方面取得了重大进展。