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Imaging fields around growing crystals

机译:晶体生长周围的成像场

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Crystal growth morphologies arise from the interplay between interface mechanisms and temperature or concentration fields around the growing crystal. We shall describe experimental methods which we have developed in order to measure these fields in both two- and three- dimensional environment. We compare the observations with current growth theories for examples of two distinctly different types of crystal. The first example is NH_4Cl, a cubic crystal which grown dendritically from su-persaturated queuos solution, in which we have measured the two-dimensional concentration field by interference microscopy. The experiments allow determination of the anisotropies of both the surface tension and the kinetic growth admittance. As a result we have been able to explain the m0rphological transition observed in this crystal at high growth velocities. The second example is heavy ice (D_2)) growing from supercooled heavy water, in which we have investigated the three-dimensional temperature field by interference topography. Ice crystals are very anisotropy and show peculiar growth modess. We illustrate the use of the temperature map in understanding the stability of asymmetrical morphologies which have been observed in ice and other crystals.
机译:晶体生长形态是由于界面机制与晶体周围温度或浓度场之间的相互作用而产生的。我们将描述为在二维和三维环境中测量这些场而开发的实验方法。我们将观察结果与当前的生长理论进行比较,以研究两种截然不同类型的晶体。第一个例子是NH_4Cl,这是一种立方晶体,是从过饱和排队溶液中树枝状生长的,其中我们通过干涉显微镜测量了二维浓度场。实验允许确定表面张力和动力学生长导纳的各向异性。结果,我们已经能够解释在高生长速度下在该晶体中观察到的形态学转变。第二个示例是从过冷重水中产生的重冰(D_2),其中我们通过干涉形貌研究了三维温度场。冰晶非常各向异性,并显示出奇特的生长模式。我们举例说明了温度图在理解冰和其他晶体中观察到的不对称形态稳定性方面的用途。

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