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  • Cite this article:

    Haoyu Qi, Yang Liu, Shaohuang Bian, Runing Liang, Dan Zhang, Feng Huang. Effect of the confinement on two-dimensional complex plasmas with the shear forceJ. Chin. Phys. B, 2025, 34(10): 105203.
    Haoyu Qi, Yang Liu, Shaohuang Bian, Runing Liang, Dan Zhang, Feng Huang. Effect of the confinement on two-dimensional complex plasmas with the shear forceJ. Chin. Phys. B, 2025, 34(10): 105203.
  • Effect of the confinement on two-dimensional complex plasmas with the shear force

    • Langevin molecular dynamics simulations reveal the impact of confinement strength on the structure and dynamics of a two-dimensional complex plasma under constant shear force. Structural analysis via Voronoi diagrams and the local bond-order parameter |Ψ6| shows that stronger confinement enhances hexagonal order and mitigates shear-induced disorder. Dynamical properties, determined by mean-square displacement (MSD) and the velocity autocorrelation function (VACF), indicate that the shear-induced superdiffusion weakens with increasing confinement strength. The entropy change (ΔS) shows that strong confinement (ω > 1) balances particle dynamics between shear and shear-free regions, thereby stabilizing the system. These findings highlight the interplay between confinement and shear force.
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