弹道
跟踪(教育)
计算机科学
探测器
像素
职位(财务)
红外线的
运动检测
光电子学
匹配移动
异质结
灵敏度(控制系统)
非线性系统
数码产品
动态范围压缩
电子工程
压缩传感
材料科学
计算机视觉
光电探测器
静电计
图像传感器
近红外光谱
传感器阵列
人工智能
多路复用
运动(物理)
带宽(计算)
实时计算
碲化镉汞
运动估计
机器人
晶体管
物理
数据采集
吞吐量
无线传感器网络
热辐射计
时间分辨率
作者
Xue Li,Xue Li,Tianyue Wang,Di Wu,Dongyang Wu,Di Wu,Di Wu,Xinjian Li,Wenxiao Wang,Haiyan Wang,Xinjian Li,Xinjian Li,Yuen Hong Tsang,Shu Ping Lau,Jiewei Chen,Longhui Zeng
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-09-18
卷期号:12 (38): eaeh4592-eaeh4592
标识
DOI:10.1126/sciadv.aeh4592
摘要
Accurate motion detection and trajectory tracking are crucial for scientific and technological applications, but current techniques rely on high-pixel–density imaging arrays that demand extensive hardware and computational resources. Here, we demonstrate high-performance motion detection and tracking sensors based on in situ monolithically integrated wafer-scale telluride semimetals and germanium. Interfacial engineering enhances carrier transport while minimizing interfacial recombination, enabling room-temperature infrared detection up to 10.6 micrometers with a peak sensitivity of 91.6 millivolts per millimeter, a low nonlinearity of 5.1%, and a specific detectivity exceeding 10 10 centimeter–square root hertz per watt in the mid-infrared range. These advancements facilitate real-time infrared position sensing and trajectory tracking with a resolution of 9.7 micrometers. With in-sensor compression, which achieves a 400× reduction by condensing data from 100 × 100 pixels to 5 × 5 elements, a sparse position-sensitive detector array achieves 95% accuracy in simultaneously identifying and tracking multiple dynamic targets. Our monolithically integrated semimetal sensors open avenues toward resource-efficient, precise motion analytics and perception.
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