返回
High-Spatial-Resolution Sub-Surface Imaging Using a Laser-Based Acoustic Microscopy Technique
DOI:10.1109/TUFFC.2011.1789.png)
摘要
En 中文
Scanning acoustic microscopy techniques operating at frequencies in the gigahertz range are suitable for the elastic characterization and interior imaging of solid media with micrometer-scale spatial resolution. Acoustic wave propagation at these frequencies is strongly limited by energy losses, particularly from attenuation in the coupling media used to transmit ultrasound to a specimen, leading to a decrease in the depth in a specimen that can be interrogated. In this work, a laser-based acoustic microscopy technique is presented that uses a pulsed laser source for the generation of broadband acoustic waves and an optical interferometer for detection. The use of a 900-ps microchip pulsed laser facilitates the generation of acoustic waves with frequencies extending up to 1 GHz which allows for the resolution of micrometer-scale features in a specimen. Furthermore, the combination of optical generation and detection approaches eliminates the use of an ultrasonic coupling medium, and allows for elastic characterization and interior imaging at penetration depths on the order of several hundred micrometers. Experimental results illustrating the use of the laser-based acoustic microscopy technique for imaging micrometer-scale subsurface geometrical features in a 70-mu m-thick single-crystal silicon wafer with a (100) orientation are presented.
Keyword:
GENERATED ULTRASOUND
THIN-FILMS
WAVES
PLATE
AI总结
对已上传原文的论文进行重点信息的提取,主要内容包括:简要概述、研究摘要、背景介绍、关键亮点、图文解析、展望与总结。
期刊
IF:
3.7
论文数:
6.7K
被引数:
1.4W
机构
引用论文
The Profiles Based on Ridge and Valley Lines to Extract Shoulder Lines on the Loess Plateau基于沟沿线和山脊线的黄土高原肩线提取剖面
The tryptophan catabolite l-kynurenine inhibits the surface expression of NKp46- and NKG2D-activating receptors and regulates NK-cell function
Blood
IF0
Type 1 Diabetes Patient Experiences Before and After Transfer from a Paediatric to an Adult Hospital


