arXiv · cond-mat/9509174
Gravity-Induced Shape Transformations of Vesicles
Abstract
We theoretically study the behavior of vesicles filled with a liquid of higher density than the surrounding medium, a technique frequently used in experiments. In the presence of gravity, these vesicles sink to the bottom of the container, and eventually adhere even on non - attractive substrates. The strong size-dependence of the gravitational energy makes large parts of the phase diagram accessible to experiments even for small density differences. For relatively large volume, non-axisymmetric bound shapes are explicitly calculated and shown to be stable. Osmotic deflation of such a vesicle leads back to axisymmetric shapes, and, finally, to a collapsed state of the vesicle.
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Martin Kraus, Udo Seifert, Reinhard Lipowsky. 1995-09-28. Gravity-Induced Shape Transformations of Vesicles. https://doi.org/10.1209/0295-5075%2F32%2F5%2F009
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