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Hetero-integration enables fast switching time-of-flight sensors for light detection and ranging

机译:异源集成使得能够快速切换飞行时间传感器,用于光检测和测距

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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.
机译:飞行时间(TOF)原理是用于测量距离的方法,通过检测发射和反射光通量之间的时间或相位差来测量距离和构造三维(3D)图像。 TOF原则已经用于各种应用,包括轻型和检测(LIDAR),机器视觉和生物医学工程;然而,庞大的系统尺寸和切换速度慢妨碍了TOF技术的广泛应用。为了减轻这些问题,进行了通过冷焊方法的单个平台上的GaN基高电子迁移率晶体管(HEMT)和GaAs基垂直腔表面发射激光器(Vcsels)的杂集的证明。与硅晶体管基系统相比,杂交型TOF传感器具有卓越的开关性能,小型化尺寸和表现出稳定的测距和高分辨率深度成像。这种基于不同材料的高性能设备的这种异质集成系统表明了一种朝向实现高分辨率3D成像的新途径,并激发了异构地集成电子和光电子的更宽范围应用。

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