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Speckle interferometry with nanoparticles

机译:纳米颗粒斑点干涉法

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Abstract: The sensitivity of one beam speckle interferometry (also called speckle photography) is the size of speckles that can be generated. In the early days of this technique, speckle size is essentially controlled by the aperture size of the recording camera. When laser speckle is used, the wavelength of the laser beam, the fumber of the recording lens and magnification of the system determines how small the laser speckles can be generated. When white light speckle is used, the size is determined by the resolution of the recording lens. The theoretical limits of these two approaches are actually the same in that no speckle smaller that 1/2 of the wavelength of the radiation can be recorded. However, speckles much smaller than lens resolution can be generated using either a chemical or a physical vapor deposition process. And they can be clearly recorded using an electron microscope. We have successfully created nanometer speckles and applied them to variety of solid mechanics problems of importance. Examples include characterization of mechanical properties of interphase in metal matrix composite, study of kinking failure mechanism of fibrous composite, measurement of thermal deformation of solder joint in electronic devices, etc. This nanospeckle technique has opened up a new field of investigation which heretofore was not accessible to experimentalist. !12
机译:摘要:一束光斑干涉法(也称为光斑摄影)的灵敏度是可以产生的光斑大小。在该技术的早期,斑点大小基本上由记录相机的光圈大小控制。当使用激光散斑时,激光束的波长,记录透镜的f /数和系统的放大倍数决定了可以产生多小的激光散斑。当使用白光斑点时,尺寸由记录透镜的分辨率决定。这两种方法的理论极限实际上是相同的,因为没有斑点可以记录为小于辐射波长的1/2。但是,使用化学或物理气相沉积工艺会产生比透镜分辨率小得多的斑点。并且可以使用电子显微镜清楚地记录它们。我们已经成功创建了纳米斑点,并将它们应用于各种重要的固体力学问题。实例包括表征金属基复合材料中相间机械性能,研究纤维复合材料的纽结破坏机理,测量电子设备中焊点的热变形等。这种纳米散斑技术开辟了迄今为止尚未发现的新研究领域。实验者可以使用。 !12

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