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Clustering of ions at atomic dimensions in quantum plasmas

机译:量子等离子体中原子尺寸的离子聚集

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By means of particle simulations of the equations of motion for ions interacting among themselves under the influence of newly discovered Shukla-Eliasson attractive force (SEAF) in a dense quantum plasma, we demonstrate that the SEAF can bring ions closer at atomic dimensions. We present simulation results of the dynamics of an ensemble of ions in the presence of the SEAF without and with confining external potentials and collisions between ions and degenerate electrons. Our particle simulations reveal that under the SEAF, ions attract each other, come closer, and form ionic clusters in the bath of degenerate electrons that shield ions. Furthermore, an external confining potential produces robust ion clusters that can have cigar- and ball-like shapes, which remain stable when the confining potential is removed. The stability of ion clusters is discussed. Our results may have applications to solid density plasmas (density exceeding 10~(23) per cm~3), where the electrons will be degenerate and quantum forces due to the electron recoil effect caused by the overlapping of electron wave functions and electron tunneling through the Bohm potential, electron-exchange and electron-exchange and electron correlations associated with electron-1/2 spin effect, and the quantum statistical pressure of the degenerate electrons play a decisive role.
机译:通过在密集量子等离子体中新发现的舒克拉-埃里亚森引力(SEAF)的影响下,离子之间相互作用的运动方程的粒子模拟,我们证明了SEAF可以使离子在原子尺寸上更接近。我们介绍了在没有和有外部电势以及离子之间的碰撞和简并电子退化的情况下,SEAF存在下离子整体动力学的模拟结果。我们的粒子模拟表明,在SEAF下,离子相互吸引,靠近并在由简并电子屏蔽离子的简并电子浴中形成离子簇。此外,外部限制电位产生坚固的离子簇,其具有雪茄和球形形状,当消除限制电位时,离子簇保持稳定。讨论了离子簇的稳定性。我们的结果可能适用于固体密度等离子体(密度超过10〜(23)/ cm〜3),其中电子将退化,并且由于电子波功能的重叠和电子隧穿导致的电子反冲效应而产生量子力波姆势,电子交换和电子交换以及与电子1/2自旋效应相关的电子相关性,以及简并电子的量子统计压力起着决定性的作用。

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