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000047062 0247_ $$2DOI$$a10.1103/PhysRevE.72.011901
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000047062 084__ $$2WoS$$aPhysics, Fluids & Plasmas
000047062 084__ $$2WoS$$aPhysics, Mathematical
000047062 1001_ $$0P:(DE-Juel1)VDB37578$$aNoguchi, H.$$b0$$uFZJ
000047062 245__ $$aDynamics of Fluid Vesicles in Shear Flow: Effect of Membrane Viscosity and Thermal Fluctuations
000047062 260__ $$aCollege Park, Md.$$bAPS$$c2005
000047062 264_1 $$2Crossref$$3online$$bAmerican Physical Society (APS)$$c2005-07-01
000047062 264_1 $$2Crossref$$3print$$bAmerican Physical Society (APS)$$c2005-07-01
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000047062 440_0 $$04924$$aPhysical Review E$$v72$$x1539-3755
000047062 500__ $$aRecord converted from VDB: 12.11.2012
000047062 520__ $$aThe dynamical behavior of vesicles is investigated in simple shear flow. A simulation technique is presented that combines a three-dimensional particle-based mesoscopic model (multiparticle collision dynamics) for the solvent with a dynamically triangulated surface model for the membrane. In this model, thermal fluctuations of the solvent and of the membrane are consistently taken into account. The membrane viscosity can be varied by changing the bond-flip rate of the dynamically triangulated surface. Vesicles are found to transit from steady tank-treading to unsteady tumbling motion with increasing membrane viscosity. At small reduced volumes, the shear induces a transformation from a discocyte to a prolate shape at low membrane viscosity. On the other hand, at high membrane viscosity, the shear induces a transformation from prolate to discocyte, or tumbling motion accompanied by shape oscillations between these two states. Thermal fluctuations induce intermittent tumbling and smooth out the transitions. This effect can be understood from a simplified stochastic model.
000047062 536__ $$0G:(DE-Juel1)FUEK242$$2G:(DE-HGF)$$aKondensierte Materie$$cM02$$x0
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000047062 7001_ $$0P:(DE-Juel1)130665$$aGompper, G.$$b1$$uFZJ
000047062 77318 $$2Crossref$$3journal-article$$a10.1103/physreve.72.011901$$bAmerican Physical Society (APS)$$d2005-07-01$$n1$$p011901$$tPhysical Review E$$v72$$x1539-3755$$y2005
000047062 773__ $$0PERI:(DE-600)2844562-4$$a10.1103/PhysRevE.72.011901$$gVol. 72, p. 011901$$n1$$p011901$$q72<011901$$tPhysical review / E$$v72$$x1539-3755$$y2005
000047062 8567_ $$uhttp://hdl.handle.net/2128/1522$$uhttp://dx.doi.org/10.1103/PhysRevE.72.011901
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