首页> 外文期刊>The European physical journal, B. Condensed matter physics >Force-induced desorption of self-avoiding walks on Sierpinski gasket fractals
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Force-induced desorption of self-avoiding walks on Sierpinski gasket fractals

机译:Sierpinski密封垫分形上的力诱导的自避免游动解吸

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In this work we investigate force-induced desorption of linear polymers in good solvents in non-homogeneous environment, by applying the model of self-avoiding walk on two- and three-dimensional fractal lattices, obtained as generalization of the Sierpinski gasket fractal. For each of these lattices one of its boundaries represents an adsorbing wall, whereas along one of the fractal edges, not lying in the adsorbing wall, an external force acts on the self-avoiding walk. The hierarchical nature of the lattices under study enables an exact real-space renormalization group treatment, which yields the phase diagram of polymer critical behavior. We show that for this model there is no low-temperature reentrance in the cases of two-dimensional lattices, whereas in all studied three-dimensional cases the force-temperature dependance is reentrant. We also find that in all cases the force-induced desorption transition is of first order.
机译:在这项工作中,我们通过在二维和三维分形格上应用自回避模型,研究了在非均质环境中力溶剂中线性聚合物在力诱导下的解吸现象,该模型作为Sierpinski密封垫分形的推广而获得。对于这些晶格中的每一个,其边界之一代表一个吸附壁,而沿着分形边缘之一(不位于吸附壁中),外力作用在自回避行进上。所研究晶格的层级性质可实现精确的实空间重归一化组处理,从而产生聚合物临界行为的相图。我们表明,对于该模型,在二维晶格的情况下不存在低温折返,而在所有研究的三维情况下,力-温度依赖性是折返的。我们还发现,在所有情况下,力引起的解吸转变都是一阶的。

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