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高速太赫兹时域反射成像技术。

High-Speed THz Time-of-Flight Imaging with Reflective Optics.

机构信息

Department of Physics and Department of Energy Systems Research, Ajou University, Suwon 16499, Republic of Korea.

Panoptics Corp., Seongnam 13516, Republic of Korea.

出版信息

Sensors (Basel). 2023 Jan 12;23(2):873. doi: 10.3390/s23020873.

Abstract

In this study, we develop a 3D THz time-of-flight (TOF) imaging technique by using reflective optics to preserve the high-frequency components from a THz antenna. We use an Fe:InGaAs/InAlAs emitter containing relatively high-frequency components. THz-TOF imaging with asynchronous optical sampling (ASOPS) enables the rapid scanning of 100 Hz/scan with a time delay span of 100 ps. We characterize the transverse resolution using knife edge tests for a focal length of 5; the Rayleigh resolution has been measured at 1.0 mm at the focal plane. Conversely, the longitudinal resolution is determined by the temporal pulse width, confirmed with various gap structures enclosed by a quartz substrate. The phase analysis reveals that reflected waves from the top interface exhibit a phase shift when the gap is filled by high-indexed materials such as water but shows in-phase behavior when it is filled with air and low-indexed material. Our imaging tool was effective for inspecting the packaged chip with high lateral and longitudinal resolution. Importantly, the phase information in 2D and 3D images is shown to be a powerful tool in identifying the defect-in particular, delamination in the chip-which tends to be detrimental to the packaged chip's stability.

摘要

在这项研究中,我们开发了一种使用反射光学元件的 3D 太赫兹飞行时间 (THz-TOF) 成像技术,以保留来自太赫兹天线的高频分量。我们使用了含有相对高频分量的 Fe:InGaAs/InAlAs 发射器。利用异步光学采样 (ASOPS) 进行太赫兹-TOF 成像,可以实现 100 Hz/扫描的快速扫描,时间延迟跨度为 100 ps。我们使用刀边测试来表征焦距为 5 的横向分辨率;在焦平面上已经测量到瑞利分辨率为 1.0 毫米。相反,纵向分辨率由时间脉冲宽度决定,通过石英基板包围的各种间隙结构进行确认。相位分析表明,当间隙填充高折射率材料(如水)时,来自顶部界面的反射波会发生相移,但当间隙填充空气和低折射率材料时,会表现出同相行为。我们的成像工具对于具有高横向和纵向分辨率的封装芯片的检查非常有效。重要的是,二维和三维图像中的相位信息被证明是识别缺陷的有力工具,特别是芯片分层,这往往对封装芯片的稳定性有害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f212/9861287/a9963f47d9e1/sensors-23-00873-g001.jpg

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