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Helium Droplet Assembled Nanocluster Films: Cluster Formation and Deposition Rates

机译:氦气液滴组装的纳米团簇膜:团簇形成和沉积速率

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This article examines the formation of nanoclusters by superfluid helium droplet assembly and the rates at which they can be deposited. A model of this process is presented that takes into account the hydrodynamic properties of droplet nozzle, the helium droplet size distribution, the dopant incorporation and condensation process, and the transport and collision of the doped droplet beam with a substrate. The results of this model are validated against measured magnesium cluster deposition rates produced in a droplet beam over a range of nozzle pressures and temperatures.- This effort illuminates the connection between cluster deposition and the hydrodynamic state of a helium droplet beam, as well as, demonstrates the feasibility and level of control that can exist in creating cluster-based films by helium droplet assisted cluster assembly.
机译:本文研究了由超流体氦滴组装形成的纳米团簇及其沉积速率。提出了该过程的模型,该模型考虑了液滴喷嘴的流体力学特性,氦液滴尺寸分布,掺杂剂掺入和冷凝过程以及掺杂液滴束与基板的传输和碰撞。该模型的结果针对在一定范围的喷嘴压力和温度下在液滴束中测得的镁团簇沉积速率进行了验证。-这一工作阐明了团簇沉积与氦液滴束的流体力学状态之间的联系,以及演示了通过氦滴辅助簇组装在创建基于簇的薄膜中可以存在的控制的可行性和控制水平。

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