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Time-Lapse, in Situ Imaging of Ice Crystal Growth Using Confocal Microscopy

机译:使用共聚焦显微镜对冰晶生长进行时移,原位成像

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Ice crystals nucleate and grow when a water solution is cooled below its freezing point. The growth velocities and morphologies of the ice crystals depend on many parameters, such as the temperature of ice growth, the melting temperature, and the interactions of solutes with the growing crystals. Three types of morphologies may appear: dendritic, cellular (or fingerlike), or the faceted equilibrium form. Understanding and controlling which type of morphology is formed is essential in several domains, from biology to geophysics and materials science. Obtaining, in situ, three dimensional observations without introducing artifacts due to the experimental technique is nevertheless challenging. Here we show how we can use laser scanning confocal microscopy to follow in real-time the growth of smoothed and faceted ice crystals in zirconium acetate solutions. Both qualitative and quantitative observations can be made. In particular, we can precisely measure the lateral growth velocity of the crystals, a measure otherwise difficult to obtain. Such observations should help us understand the influence of the parameters that control the growth of ice crystals in various systems.
机译:当水溶液冷却至冰点以下时,冰晶成核并生长。冰晶的生长速度和形态取决于许多参数,例如冰的生长温度,融化温度以及溶质与生长晶体的相互作用。可能出现三种类型的形态:树突状,细胞状(或手指状)或多面平衡形式。从生物学到地球物理学和材料科学,在几个领域中了解和控制形成哪种类型的形态都是必不可少的。然而,由于实验技术的原因,在不引入伪影的情况下就地获得三维观测结果仍然具有挑战性。在这里,我们展示了如何使用激光扫描共聚焦显微镜实时跟踪醋酸锆溶液中光滑和多面的冰晶的生长。可以进行定性和定量观察。特别是,我们可以精确地测量晶体的横向生长速度,否则很难获得该测量结果。这些观察结果应该有助于我们理解控制各种系统中冰晶生长的参数的影响。

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