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首页> 外文期刊>Journal of Low Temperature Physics >Kinematics of the Doped Quantum Vortices in Superfluid Helium Droplets
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Kinematics of the Doped Quantum Vortices in Superfluid Helium Droplets

机译:超流氦液滴中掺杂量子涡流的运动学

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Recent observation of quantum vortices in superfluid He droplets measuring a few hundreds of nanometers in diameter involved decoration of vortex cores by clusters containing large numbers of Xe atoms, which served as X-ray contrast agents. Here, we report on the study of the kinematics of the combined vortex-cluster system in a cylinder and in a sphere. Equilibrium states, characterized by total angular momentum, L, were found by minimizing the total energy, E, which sums from the kinetic energy of the liquid due to the vortex and due to orbiting Xe clusters, as well as solvation energy of the cluster in the droplet. Calculations show that, at small mass of the cluster, the equilibrium displacement of the system from the rotation axis is close to that for the bare vortex. However, upon decrease in L beyond certain critical value, which is larger for heavier clusters, the displacement bifurcates toward the surface region, where the motion of the system is governed by the clusters. In addition, at even smaller L, bare orbiting clusters become energetically favorable, opening the possibility for the vortex to detach from the cluster and to annihilate at the droplet's surface.
机译:最近对超流体的量子涡流观察Superfluid HE液滴,其直径几百纳米涉及含有大量XE原子的簇的涡流芯的装饰,其用作X射线造影剂。在这里,我们报告了汽缸中组合涡流系统的运动学研究。通过最小化总能量e,其特征在于,通过从涡流引起的液体的动能的总能量E和由于轨道簇的总能量和簇的溶剂能量以及簇的溶剂化能量来发现,其特征在于,以总角度为特征的态液滴。计算表明,在群体的较小质量下,系统从旋转轴线的平衡位移靠近裸涡流的那个。然而,在L超出某些临界值的L超出较大簇的情况下,朝向表面区域的位移分叉分叉,其中系统的运动由簇控制。另外,在甚至更小的L中,裸轨簇变得充满活力,打开漩涡从簇中脱离的可能性,并在液滴表面下湮灭。

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