从超流体4He薄膜中蒸发的原子束的自准直

Hjort, Edwards
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引用次数: 0

摘要

利用标度蒙特卡罗方法,我们模拟了从超流体4He薄膜中蒸发的脉冲原子束的散射。模拟假设离开表面的原子在薄膜温度t处具有平衡的麦克斯韦分布,这意味着初始粒子通量以cos直θ(朗伯特定律)变化。我们发现原子散射在薄膜上方的作用是使通量偏向于正向(小直θ)方向,这与Eckardt等人的实验结果一致。仿真结果表明,随着热输入Q的增大和脉冲长度的减小,与朗伯定律的偏差迅速增大。同时,相对于全球平均水平2k(B)T,前进方向每粒子的平均动能有所增强。相对于速度的分布在前进方向上比麦克斯韦公式窄,但在大角度上更宽。我们发现,通过狭缝的光束比没有碰撞的弹道计算稍微窄一些。这种效应似乎在对应于每个原子30或40次碰撞的Q值时达到饱和。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-collimation in an atomic beam evaporated from a superfluid 4He film

Using a scaling Monte Carlo method, we have simulated the scattering in a pulsed atomic beam evaporated from a superfluid 4He film. The simulation assumes that the atoms leaving the surface have the equilibrium Maxwellian distribution at the temperature of the film T. This means that the initial particle flux varies as cos straight theta (Lambert's law). We find that the effect of atomic scattering just above the film is to bias the flux in favor of the forward (small straight theta) direction, in agreement with the experiment of Eckardt et al. The simulation predicts that the deviation from Lambert's law grows rapidly with increasing heat input Q and decreasing pulse length. At the same time, the average kinetic energy per particle in the forward direction is enhanced relative to the global average, 2k(B)T. The distribution with respect to speed is narrower than Maxwellian in the forward direction but broader at large angles. We find that a beam that has passed through a slit is slightly narrower than in a ballistic calculation with no collisions. This effect seems to saturate at values of Q that correspond to 30 or 40 collisions per atom.

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