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- W3091888797 abstract "We investigate the behavior of two-dimensional systems that exhibit a transition between homogeneous and spatially inhomogeneous phases, which have spherical topology, and whose mechanical properties depend on the local value of the order parameter. One example of such a system is multicomponent lipid bilayer vesicles, which serve as a model to study cellular membranes. Under certain conditions, such bilayers separate into coexisting liquid-ordered and liquid-disordered regions. When arranged into the shape of small vesicles, this phase coexistence can result in spatial patterns that are more complex than the basic two-domain configuration encountered in typical bulk systems. The difference in bending rigidity between the liquid-ordered and liquid-disordered regions couples the shape of the vesicle to the local composition. We show that this interplay gives rise to a rich phase diagram that includes homogeneous, separated, and axisymmetric modulated phases that are divided by regions of spiral patterns in the surface morphology." @default.
- W3091888797 created "2020-10-15" @default.
- W3091888797 creator A5002248940 @default.
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- W3091888797 date "2020-10-08" @default.
- W3091888797 modified "2023-10-17" @default.
- W3091888797 title "Modulated and spiral surface patterns on deformable lipid vesicles" @default.
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- W3091888797 doi "https://doi.org/10.1063/5.0020087" @default.
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- W3091888797 hasPublicationYear "2020" @default.
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