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Partial Localization, Lipid Bilayers, and the Elastica Functional

机译:部分定位,脂质双层和Elastica功能

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Partial localization is the phenomenon of self-aggregation of mass into highdensity structures that are thin in one direction and extended in the others. We give a detailed study of an energy functional that arises in a simplified model for lipid bilayer membranes. We demonstrate that this functional, defined on a class of two-dimensional spatial mass densities, exhibits partial localization and displays the "solid-like" behaviour of cell membranes. Specifically, we show that density fields of moderate energy are partially localized, that is, resemble thin structures. Deviation from a specific uniform thickness, creation of "ends," and the bending of such structures all carry an energy penalty, of different orders in terms of the thickness of the structure. These findings are made precise in a Gamma-convergence result. We prove that a rescaled version of the energy functional converges in the zero-thickness limit to a functional that is defined on a class of planar curves. Finiteness of the limit enforces both optimal thickness and non-fracture; if these conditions are met, then the limit value is given by the classical elastica (bending) energy of the curve.
机译:部分局部化是质量自动聚集成一个高密度结构的现象,高密度结构在一个方向上薄而在另一个方向上扩展。我们对脂质双层膜的简化模型中产生的能量功能进行了详细研究。我们证明这一功能,在一类二维空间质量密度上定义,表现出部分定位并显示细胞膜的“固体样”行为。具体来说,我们表明中等能量的密度场是局部定位的,即类似于薄结构。偏离特定的均匀厚度,“末端”的产生以及这种结构的弯曲都带来能量损失,就结构的厚度而言,能量损失的数量级不同。这些发现在Gamma收敛结果中是精确的。我们证明能量函数的重新缩放版本在零厚度限制内收敛到一类平面曲线上定义的函数。极限的有限性既可以实现最佳厚度,又可以防止断裂。如果满足这些条件,则极限值由曲线的经典弹性(弯曲)能量给出。

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