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Influence of anisotropy on percolation and jamming of linear k-mers on square lattice with defects

机译:各向异性对缺陷方形晶格线性K-MERS渗透和干扰的影响

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By means of the Monte Carlo simulation, we study the layers produced by the random sequential adsorption of the linear rigid objects (k-mers also known as rigid or stiff rods, sticks, needles) onto the square lattice with defects in the presence of an external field. The value of k varies from 2 to 32. The point defects randomly and uniformly placed on the substrate hinder adsorption of the elongated objects. The external field affects isotropic deposition of the particles, consequently the deposited layers are anisotropic. We study the influence of the defect concentration, the length of the objects, and the external field on the percolation threshold and the jamming concentration. Our main findings are (i) the critical defect concentration at which the percolation never occurs even at jammed state decreases for short k-mers (k < 16) and increases for long k-mers (k > 16) as anisotropy increases, (ii) the corresponding critical k-mer concentration decreases with anisotropy growth, (iii) the jamming concentration decreases drastically with growth of k-mer length for any anisotropy, (iv) for short k-mers, the percolation threshold is almost insensitive to the defect concentration for any anisotropy.
机译:通过蒙特卡罗模拟,我们研究通过随机刚性物体(K-MERS也称为刚性或刚性或刚性杆,棍棒,针)的随机顺序吸附而产生的层,在方形格子上存在缺陷外场。 k的值从2到32变化。点随机缺陷,并均匀地放置在衬底妨碍细长物体的吸附。外部场影响颗粒的各向同性沉积,因此沉积的层是各向异性的。我们研究缺陷浓度,物体的长度和外部场对渗透阈值和干扰浓度的影响。我们的主要发现是(i)即使在堵塞状态下也不会发生的临界缺陷浓度,即使是短的K-MERS(k <16),并且随着各向异性的增加而增加,长K-MERS(K> 16)增加(II )相应的临界K-ME浓度随各向异性的生长而降低,(iii)随着短K-MERS的任何各向异性,(IV)的k-mer长度的生长,堵塞浓度随着k-mer长度的生长而降低,渗透阈值几乎对缺陷几乎不敏感任何各向异性的浓度。

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