Hydrodynamic liquid crystal models for lipid bilayers

Fuente: arXiv
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Main Authors: Nitschke, Ingo, Sischka, Jan Magnus, Voigt, Axel
Format: Preprint
Published: 2025
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author Nitschke, Ingo
Sischka, Jan Magnus
Voigt, Axel
author_facet Nitschke, Ingo
Sischka, Jan Magnus
Voigt, Axel
contents Coarse-grained continuous descriptions for lipid bilayers are typically based on minimizing the Helfrich energy. Such models consider the fluid properties of these structures only implicitly and have been shown to nicely reproduce equilibrium properties. Model extensions that also address the dynamics of these structures are surface (Navier--)Stokes--Helfrich models. They explicitly account for membrane viscosity. However, these models also usually treat the lipid bilayer as a homogeneous continuum, neglecting the molecular degrees of freedom of the lipids. Here, we derive refined models which consider in addition a scalar order parameter representing the molecular alignment of the lipids along the surface normal. Starting from hydrodynamic surface liquid crystal models, we obtain a hydrodynamic surface Landau--Helfrich model for asymmetric lipid bilayers and a surface Beris--Edwards model for symmetric lipid bilayers. The fully ordered case for both models leads to the known surface (Navier--)Stokes--Helfrich models. Besides more detailed continuous models for lipid bilayers, we therefore also provide an alternative derivation of surface (Navier--)Stokes--Helfrich models.
format Preprint
id arxiv_https___arxiv_org_abs_2512_14374
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Hydrodynamic liquid crystal models for lipid bilayers
Nitschke, Ingo
Sischka, Jan Magnus
Voigt, Axel
Soft Condensed Matter
Mathematical Physics
Fluid Dynamics
Coarse-grained continuous descriptions for lipid bilayers are typically based on minimizing the Helfrich energy. Such models consider the fluid properties of these structures only implicitly and have been shown to nicely reproduce equilibrium properties. Model extensions that also address the dynamics of these structures are surface (Navier--)Stokes--Helfrich models. They explicitly account for membrane viscosity. However, these models also usually treat the lipid bilayer as a homogeneous continuum, neglecting the molecular degrees of freedom of the lipids. Here, we derive refined models which consider in addition a scalar order parameter representing the molecular alignment of the lipids along the surface normal. Starting from hydrodynamic surface liquid crystal models, we obtain a hydrodynamic surface Landau--Helfrich model for asymmetric lipid bilayers and a surface Beris--Edwards model for symmetric lipid bilayers. The fully ordered case for both models leads to the known surface (Navier--)Stokes--Helfrich models. Besides more detailed continuous models for lipid bilayers, we therefore also provide an alternative derivation of surface (Navier--)Stokes--Helfrich models.
title Hydrodynamic liquid crystal models for lipid bilayers
topic Soft Condensed Matter
Mathematical Physics
Fluid Dynamics
url https://arxiv.org/abs/2512.14374