Fluctuation spectrum of fluid membranes coupled to an elastic meshwork: jump of the effective surface tension at the mesh size
Jean-Baptiste Fournier, David Lacoste, Elie Raphael
Abstract
We identify a class of composite membranes: fluid bilayers coupled to an elastic meshwork, that are such that the meshwork's energy is a function Fel[Aξ] not of the real microscopic membrane area A, but of a smoothed membrane's area Aξ, which corresponds to the area of the membrane coarse-grained at the mesh size ξ. We show that the meshwork modifies the membrane tension σ both below and above the scale ξ, inducing a tension-jump Δσ=dFel/dAξ. The predictions of our model account for the fluctuation spectrum of red blood cells membranes coupled to their cytoskeleton. Our results indicate that the cytoskeleton might be under extensional stress, which would provide a means to regulate available membrane area. We also predict an observable tension jump for membranes decorated with polymer "brushes".
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