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Multichannel, time-resolved picosecond laser ultrasound imaging and spectroscopy with custom complementary metal-oxide-semiconductor detector

机译:多通道,时间分辨的皮秒激光超声成像和光谱学,以及定制的互补金属氧化物半导体探测器

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摘要

This paper presents a multichannel, time-resolved picosecond laser ultrasound system that uses a custom complementary metal-oxide-semiconductor linear array detector. This novel sensor allows parallel phase-sensitive detection of very low contrast modulated signals with performance in each channel comparable to that of a discrete photodiode and a lock-in amplifier. Application of the instrument is demonstrated by parallelizing spatial measurements to produce two-dimensional thickness maps on a layered sample, and spectroscopic parallelization is demonstrated by presenting the measured Brillouin oscillations from a gallium arsenide wafer. This paper demonstrates the significant advantages of our approach to pump probe systems, especially picosecond ultrasonics. © 2010 American Institute of Physics Article Outline INTRODUCTION PARALLEL MEASUREMENT OF PLU SIGNALS Custom CMOS detector Example applications Parallelizing spatial information Parallelizing spectroscopic information Discussion
机译:本文提出了一种多通道,时间分辨皮秒激光超声系统,该系统使用定制的互补金属氧化物半导体线性阵列检测器。这种新颖的传感器可以对非常低对比度的调制信号进行并行相位敏感检测,每个通道的性能可与分立光电二极管和锁相放大器相媲美。通过平行化空间测量以在分层样品上产生二维厚度图来证明仪器的应用,并通过呈现从砷化镓晶片上测得的布里渊振荡来证明光谱平行化。本文展示了我们的泵探针系统方法的显着优势,尤其是皮秒超声波。 ©2010美国物理研究所文章概要介绍PLU信号的并行测量自定义CMOS检测器示例应用并行化空间信息并行化光谱信息讨论

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