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首页> 外文期刊>The European physical journal: Special topics >Levitation methods for structural and dynamical studies of liquids at high temperatures
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Levitation methods for structural and dynamical studies of liquids at high temperatures

机译:用于高温液体结构和动力学研究的悬浮方法

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摘要

In recent years, levitation methods have been increasingly used to study the atomic structure and dynamics of high-temperature liquids, in particular metallic melts. These methods provide a containerless and, consequently, high-purity sample environment. No corrections for signals due to a crucible need to be made, and deep undercoolings of the liquid become possible, reducing the effect of thermal fluctuations. On the other hand, the sample position and, hence, the scattering geometry is not fixed and the free sample surface exhibits capillary waves. Nevertheless, the combination of levitation techniques ith x-ray or neutron sources has proven to be possible and successful. This paper reviews the progress made in this field during the last 10 years or so. It discusses the different levitation techniques: aerodynamic, electromagnetic, electrostatic, as well as the applied spectroscopic techniques: x-ray and neutron diffraction, x-ray absorption and quasi-elastic neutron diffraction. Some recent results are also highlighted.
机译:近年来,悬浮方法已越来越多地用于研究高温液体(尤其是金属熔体)的原子结构和动力学。这些方法提供了无容器的,因此高纯度的样品环境。无需对由于坩埚引起的信号进行校正,并且可以对液体进行深度过冷,从而减少了热波动的影响。另一方面,样品位置以及因此的散射几何形状不固定,并且自由样品表面表现出毛细波。然而,事实证明,将悬浮技术与X射线或中子源相结合是可行且成功的。本文回顾了过去十年左右在该领域取得的进展。它讨论了不同的悬浮技术:空气动力学,电磁,静电以及应用的光谱技术:X射线和中子衍射,X射线吸收和准弹性中子衍射。最近的一些结果也被突出显示。

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