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用于观察不可逆现象的飞秒频闪脉冲序列多帧干涉成像。

Multi-frame interferometric imaging with a femtosecond stroboscopic pulse train for observing irreversible phenomena.

作者信息

Martynowych Dmitro, Veysset David, Maznev A A, Sun Yuchen, Kooi Steven E, Nelson Keith A

机构信息

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

Institute for Soldier Nanotechnologies, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

Rev Sci Instrum. 2020 Mar 1;91(3):033711. doi: 10.1063/1.5140446.

Abstract

We describe a high-speed single-shot multi-frame interferometric imaging technique enabling multiple interferometric images with femtosecond exposure time over a 50 ns event window to be recorded, following a single laser-induced excitation event. The stroboscopic illumination of a framing camera is made possible through the use of a doubling cavity that produces a femtosecond pulse train that is synchronized to the gated exposure windows of the individual frames of the camera. The imaging system utilizes a Michelson interferometer to extract phase and ultimately displacement information. We demonstrate the method by monitoring laser-induced deformation and the propagation of high-amplitude acoustic waves in a silicon nitride membrane. The method is applicable to a wide range of fast irreversible phenomena such as crack branching, shock-induced material damage, cavitation, and dielectric breakdown.

摘要

我们描述了一种高速单次多帧干涉成像技术,该技术能够在单次激光诱导激发事件后,在50纳秒的事件窗口内以飞秒曝光时间记录多个干涉图像。通过使用一个倍频腔产生与相机各帧的选通曝光窗口同步的飞秒脉冲序列,实现了分幅相机的频闪照明。成像系统利用迈克尔逊干涉仪来提取相位并最终获取位移信息。我们通过监测氮化硅薄膜中激光诱导的变形和高振幅声波的传播来演示该方法。该方法适用于广泛的快速不可逆现象,如裂纹分支、冲击诱导的材料损伤、空化和介电击穿。

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