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首页> 外文期刊>Annual Review of Physical Chemistry >Imaging Quantum Vortices in Superfluid Helium Droplets
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Imaging Quantum Vortices in Superfluid Helium Droplets

机译:超流氦液滴成像量子涡流

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Free superfluid helium droplets constitute a versatile medium for a diverse range of experiments in physics and chemistry that extend from studies of the fundamental laws of superfluid motion to the synthesis of novel nanomaterials. In particular, the emergence of quantum vortices in rotating helium droplets is one of the most dramatic hallmarks of superfluidity and gives detailed access to the wave function describing the quantum liquid. This review provides an introduction to quantum vorticity in helium droplets, followed by a historical account of experiments on vortex visualization in bulk superfluid helium and a more detailed discussion of recent advances in the study of the rotational motion of isolated, nano-to micrometer-scale superfluid helium droplets. Ultrafast X-ray and extreme ultraviolet scattering techniques enabled by X-ray free-electron lasers and high-order harmonic generation in particular have facilitated the in situ detection of droplet shapes and the imaging of vortex structures inside individual, isolated droplets. New applications of helium droplets ranging from studies of quantum phase separations to mechanisms of low-temperature aggregation are discussed.
机译:Free Superfluid Helium Droplet构成了一种多功能培养基,用于物理和化学各种实验,这些实验从超流动运动的基本规律的研究延伸到新型纳米材料的合成。特别地,旋转氦液滴中量子涡流的出现是超浊的最戏剧性的标志之一,并详细访问描述量子液体的波浪功能。本综述提供了氦液滴中量子涡度的介绍,其次是散装超流氦中涡旋可视化实验的历史记录,并更详细地讨论了隔离,纳米至微米级旋转运动的研究进展超流氦液滴。特别是X射线自由电子激光器和高阶谐波产生的超快X射线和极端紫外散射技术尤其促进了液滴形状的原位检测和单独的液滴内部的涡流结构的成像。讨论了从量子相分离研究与低温聚集机制的研究新的氦液滴应用。

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