First-order transition of tethered membranes in three-dimensional space

J.-Ph. Kownacki and H. T. Diep
Phys. Rev. E 66, 066105 – Published 9 December 2002
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Abstract

We study a model of phantom tethered membranes, embedded in three-dimensional space, by extensive Monte Carlo simulations. The membranes have hexagonal lattice structure where each monomer is interacting with six nearest-neighbors (NN). Tethering interaction between NN, as well as curvature penalty between NN triangles are taken into account. This model is new in the sense that NN interactions are taken into account by a truncated Lennard-Jones potential including both repulsive and attractive parts. The main result of our study is that the system undergoes a first-order crumpling transition from low-temperature flat phase to high-temperature crumpled phase, in contrast with early numerical results on models of tethered membranes.

  • Received 28 June 2002

DOI:https://doi.org/10.1103/PhysRevE.66.066105

©2002 American Physical Society

Authors & Affiliations

J.-Ph. Kownacki and H. T. Diep*

  • Laboratoire de Physique Théorique et Modélisation, CNRS–Université de Cergy-Pontoise, UMR 8089-5, mail Gay-Lussac, Neuville sur Oise, 95031 Cergy-Pontoise Cedex, France

  • *Email address: diep@ptm.u-cergy.fr

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Issue

Vol. 66, Iss. 6 — December 2002

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