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Effect of wetting on nucleation and growth of D-2 in confinement

机译:润湿对禁闭中D-2的成核和生长的影响

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We have performed a computational study to determine how the wetting of liquid deuterium to the walls of the material influences nucleation. We present the development of a pair-wise interatomic potential that includes zero-point motion of molecular deuterium. Deuterium is used in this study because of its importance to inertial confinement fusion and the potential to generate a superfluid state if the solidification can be suppressed. Our simulations show that wetting dominates undercooling compared to the pore geometries. We observe a transition from heterogeneous nucleation at the confining wall to homogeneous nucleation at the bulk of the liquid (and intermediate cases) as the interaction with the confining wall changes from perfect wetting to non-wetting. When nucleation is heterogeneous, the temperature needed for solidification changes by 4 K with decreasing deuterium-wall interaction, but it remains independent (and equal to the one from bulk samples) when homogeneous nucleation dominates. We find that growth and quality of the resulting microstructure also depends on the magnitude of liquid deuterium-wall interaction strength.
机译:我们已经进行了计算研究以确定如何将液体氘润湿到材料的壁上影响成核。我们介绍了一种成对的内部潜力,包括分子氘的零点运动。在本研究中使用氘代是对惯性限制融合的重要性以及如果可以抑制凝固,则能够产生超流状态。我们的模拟表明,与孔的几何形状相比,润湿占据过冷却的。我们观察到在狭窄壁上的异质成核在液体(和中间病例)的均匀成核中的过渡,因为与限制壁的相互作用从完全润湿到非润湿性。当成核是异质的时,在均匀成核占主导地位时,凝固所需的温度通过4 k变化4 k,但随着均质成核,它保持独立(并且等于来自散装样品的温度)。我们发现所得到的微观结构的生长和质量也取决于液体氘壁相互作用强度的大小。

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