在零度温度下的超流体纳米滴的碰撞中量子化旋核化
Ernesto García-Alfonso1, Francesco Ancilotto2,3, Manuel Barranco4,5
1Laboratoire Collisions, Agrégats, Réactivité (LCAR), Université de Toulouse, CNRS, 31062 Toulouse, France.
The Journal of chemical physics
|August 21, 2023
概括
超流体-4滴之间的碰撞可以产生量子,特别是非零冲击参数. 这些超流体-4液滴碰撞也显示了由于范德瓦尔斯力导致的液滴凝聚.
科学领域:
- 量子流体动力学 量子流体动力学
- 低温物理 低温物理
- 超流动性是一种超流动性.
背景情况:
- 超流体-4 (4He) 呈现出独特的量子现象.
- 滴滴碰撞对于理解超流体行为至关重要.
- 以前的研究往往侧重于正面碰撞或缺乏详细的旋分析.
研究的目的:
- 在相撞的超流体4He滴中研究量子化旋核化.
- 分析速度和冲击参数对形成的影响.
- 在非理想的碰撞场景中探索滴滴凝聚机制.
主要方法:
- 运用了对液体4He的时间依赖密度函数理论.
- 在零度温度下模拟超流体4He滴的碰撞.
- 分析了滴滴变形,旋核和表面波动力学.
主要成果:
- 量子化旋在非零冲击参数中具有核,与产生环的正面碰撞不同.
- 线性旋形成在表面的痕;对产生的相同大小的滴,奇数不等大小的奇数.
- 由于范德瓦尔斯的吸引力,即使在放牧碰撞中也观察到滴滴凝聚,最高可达80米/秒.
结论:
- 超流体4He滴滴碰撞是量子化旋核形成的一个可行的机制.
- 碰撞参数显著影响旋类型和数量.
- 范德瓦尔斯力在低冲击碰撞中滴滴凝聚起关键作用.
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