论文标题

单分散复合物等离子体中的方格形成

Square lattice formation in a monodisperse complex plasma

论文作者

Sing, Swarnima, Bandyopadhyay, Pintu, Kumar, Krishan, Sen, Abhijit

论文摘要

我们介绍了单分散复合物等离子体系统中方格形成的首次观察 - 一种长期以来一直是该领域的实验挑战的构型过渡现象。实验是在DC Glow放电氩等离子体环境中的桌面L形尘土灰尘等离子体实验(DPEX-II)设备中进行的。通过仔细控制限制带电颗粒的垂直电势以及与灰尘颗粒的离子唤醒相互作用的强度,我们能够将系统引导到具有方形晶格构型的结晶相。当垂直限制强度略微降低到临界值以下,导致单分散六角形2D尘埃晶体弯曲以形成狭窄的双层状态(准2D状态)时,就会发生过渡。通过与我们实验相关的参数进行的分子动力学(MD)模拟提供了对过渡过程的一些理论见解。

We present the first observations of a square lattice formation in a monodisperse complex plasma system - a configurational transition phenomenon that has long been an experimental challenge in the field. The experiments are conducted in a tabletop L-shaped Dusty Plasma Experimental (DPEx-II) device in a DC glow discharge Argon plasma environment. By a careful control of the vertical potential confining the charged particles as well as the strength of the ion wake charge interactions with the dust particles we are able to steer the system towards a crystalline phase that exhibits a square lattice configuration. The transition occurs when the vertical confinement strength is slightly reduced below a critical value leading to a buckling of the monodisperse hexagonal 2D dust crystal to form a narrowly separated bilayer state (a quasi-2D state). Some theoretical insights into the transition process are provided through Molecular Dynamics (MD) simulations carried out for the parameters relevant to our experiment.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源