Attractive forces between anisotropic inclusions in the membrane of a vesicle |
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Authors: | R. Holzlöhner M. Schoen |
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Affiliation: | Institut für Theoretische Physik, Technische Universit?t Berlin, Hardenbergstra?e 36, 10623, Berlin, Germany Fachbereich Physik -- Theoretische Physik, Bergische Universit?t Wuppertal, Gau?stra?e 20, 42097, Wuppertal, Germany
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Abstract: | The fluctuation-induced interaction between two rod-like, rigid inclusions in a fluid vesicle is studied by means of canonical ensemble Monte-Carlo simulations. The vesicle membrane is represented by a triangulated network of hard spheres. Five rigidly connected hard spheres form rod-like inclusions that can leap between sites of the triangular network. Their effective interaction potential is computed as a function of mutual distance and angle of the inclusions. On account of the hard-core potential among these, the nature of the potential is purely entropic. Special precaution is taken to reduce lattice artifacts and the influence of finite-size effects due to the spherical geometry. Our results show that the effective potential is attractive and short-range compared with the rod length L. Its well depth is of the order of , where is the bending modulus. Received 5 February 1999 and Received in final form 14 May 1999 |
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Keywords: | PACS. 87.16.-b Subcellular structure and processes - 68.35.Md Surface energy thermodynamic properties - 02.70.Lq Monte Carlo and statistical methods |
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