Dijksman Joshua A, Rietz Frank, Lorincz Kinga A, van Hecke Martin, Losert Wolfgang
Physics Department, Duke University, Durham, North Carolina 27708-0305, USA.
Rev Sci Instrum. 2012 Jan;83(1):011301. doi: 10.1063/1.3674173.
We review an experimental method that allows to probe the time-dependent structure of fully three-dimensional densely packed granular materials and suspensions by means of particle recognition. The method relies on submersing a granular medium in a refractive index matched fluid. This makes the resulting suspension transparent. The granular medium is then visualized by exciting, layer by layer, the fluorescent dye in the fluid phase. We collect references and unreported experimental know-how to provide a solid background for future development of the technique, both for new and experienced users.
我们回顾了一种实验方法,该方法能够通过粒子识别来探测完全三维紧密堆积的颗粒材料和悬浮液随时间变化的结构。该方法依赖于将颗粒介质浸没在折射率匹配的流体中。这使得形成的悬浮液变得透明。然后,通过逐层激发液相中的荧光染料来观察颗粒介质。我们收集了参考文献和未报道的实验技术诀窍,为该技术的未来发展提供坚实的背景知识,无论是对于新用户还是有经验的用户。