论文标题
离子尾流诱导的模式耦合在复杂等离子体中的水平链中
Ion wake induced mode coupling in a horizontal chain in complex plasmas
论文作者
论文摘要
实验研究了在复杂的等离子体中形成的水平尘埃链,对离子唤醒诱导的模式耦合进行了研究,从而验证了先前的模拟结果。在模式光谱中检测到微弱光谱线的双分支,该模式验证了垂直Z(j = i $ \ pm $ 1)模式和纵向模式x(i)之间的模式耦合规则。谨慎的不稳定性被观察到X型和Z模型的分支相互相交。不稳定性附近的模式光谱在特定耦合的X和Z模式下表现出增强的能量密度,作为直接证据,表明这些不稳定性是由耦合模式之间的共振引起的。发现通过分析瞬时相对颗粒间距离波动(IDF)来遵守Lindemann标准的不稳定性引起的熔融阈值。通过将模式光谱与连接正常模式特征向量的碱基和K空间中的傅立叶序列相连的过渡矩阵将模式光谱倍增进一步研究。获得了对应于纵向和非平面横向灰尘晶格波(DLW)的典型分散关系,这些纵向灰尘晶格波(DLW)也表现出有限系统独有的特征,包括离散频段和能量密度中的强波动。
Ion wake induced mode coupling is investigated experimentally for a horizontal dust chain formed in a complex plasma, verifying results from previous simulation. A double branch of faint spectral lines is detected in the mode spectra which verifies the predicted rule of mode coupling between the vertical z(j=i$\pm$1) modes and the longitudinal mode x(i). Discreet instabilities are observed as the branches of x- and z-modes intersect each other. The mode spectra in the vicinity of the instabilities exhibit enhanced energy density at specific coupled x and z modes, serving as direct evidence that these instabilities are caused by resonance between the coupled modes. The instability-induced melting threshold was found to obey the Lindemann criterion through analysis of the instantaneous relative interparticle distance fluctuation (IDF). The relation between mode spectra and dispersion relations was further studied by multiplying the mode spectra with a transition matrix connecting the bases of normal mode eigenvectors and Fourier series in k space. Typical dispersion relations corresponding to the longitudinal and out-of-plane transverse Dust Lattice Waves (DLWs) are obtained, which also exhibit characteristics unique to finite systems, including discrete bands and strong fluctuations in the energy density.