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Quantum dynamics of the pick up process of atoms by superfluid helium nanodroplets: the Ne + (He-4)(1000) system

机译:超流氦纳米液滴吸收原子过程的量子动力学:Ne +(He-4)(1000)系统

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The capture dynamics of a Ne atom by a superfluid helium nanodroplet ((He-4)(N=1000); T = 0.37 K), Ne + (He-4)(N) -> Ne@(He-4)(N'), was investigated using a quantum approach (TDDFT (helium) + quantum wave packet (Ne)) at zero angular momentum and a rather wide range of Ne atom initial mean velocities (< v(0)>: 90-1300 m s(-1)). This is probably the first quantum dynamics study focusing on the pick up process and the evolution of the dopant inside the nanodroplet and the second more detailed investigation on this topic. For < v(0)> = 210 m s(-1) and above the atom is always captured, but for lower velocities the probability of capture is somewhat below the unity and decreases as < v(0)> diminishes. The main energy exchange begins with the collision of the atom with the nanodroplet surface, and the excess of energy placed in the doped nanodroplet is progressively released by the evaporation of a small amount of He-4 atoms. Once the atom has entered into the nanodroplet its mean position follows an oscillatory trajectory, due to multiple sequential collisions with the inner surface of the nanodroplet, and its mean velocity reaches values which are below Landau's critical velocity. This probably corresponds to the general behavior of nanodroplets with a bulk-like region when moderate collision energies (i.e., similar to the ones considered here) are involved. In the future we hope to investigate the influence of angular momentum on the mechanism of the pick up process, using the same quantum dynamics method.
机译:超流体氦纳米液滴((He-4)(N = 1000); T = 0.37 K),Ne +(He-4)(N)-> Ne @(He-4)( N')是使用量子方法(TDDFT(氦)+量子波包(Ne))在零角动量和相当大范围的Ne原子初始平均速度(:90-1300 ms (-1))。这可能是第一个专注于纳米液滴内部的拾取过程和掺杂剂演化的量子动力学研究,并且是有关此主题的第二个更详细的研究。对于 = 210 m s(-1)或更高原子,始终会捕获该原子,但对于较低的速度,捕获的概率会稍微低于单位数,并且随着的减小而降低。主要的能量交换从原子与纳米液滴表面的碰撞开始,并且通过少量He-4原子的蒸发逐渐释放释放到掺杂的纳米液滴中的多余能量。一旦原子进入纳米液滴,由于其与纳米液滴内表面的多次连续碰撞,其平均位置遵循振荡轨迹,其平均速度达到低于Landau临界速度的值。当涉及中等程度的碰撞能量(即类似于此处考虑的碰撞能量)时,这可能对应于具有大块状区域的纳米液滴的一般行为。将来,我们希望使用相同的量子动力学方法研究角动量对拾取过程机理的影响。

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