自我避免在平板上行走:严格的结果

E J Janse van Rensburg, E. Orlandini, S G Whittingon
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引用次数: 29

摘要

聚合物在胶体颗粒之间的封闭空间中失去熵,并对封闭颗粒施加排斥力。这种情况可以通过限制在格子中两个平行平面之间的板中的自我避免行走来模拟。本文证明了行走与平行边界平面相互作用的一般情况下存在极限自由能。我们还证明了在相图的某些区域,极限自由能随边界面之间的距离严格增加。这些结果证明了模型中存在非零的排斥性熵。最后,我们还研究了该模型的极限自由能与单平面上行走吸附模型的极限自由能之间的关系。我们证明了这些极限自由能在相图的某些区域是相等的,在平行边界平面之间的平板宽度的极限取为无穷大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-avoiding walks in a slab: rigorous results
A polymer in the confined spaces between colloid particles loses entropy and exerts a repulsive entropic force on the confining particles. This situation can be modelled by a self-avoiding walk confined in a slab between two parallel planes in the lattice. In this paper, we prove the existence of a limiting free energy for the general case that the walk is interacting with the parallel bounding planes. We also prove that the limiting free energy is strictly increasing with the distance between the bounding planes in some regions of the phase diagram. These results demonstrate the presence of a non-zero repulsive entropic force in the model. Finally, we also examine the relation between the limiting free energy in this model and the limiting free energy in a model of walks adsorbing onto a single plane. We prove that these limiting free energies are equal in some regions of the phase diagram in the limit that the width of the slab between the parallel bounding planes is taken to infinity.
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