Physical Review Letters · 2012 · 48 citations · 25 references
Colloidal MaterialEngineeringMicroscopyFluid MechanicsActive FluidSoft MatterColloidal RodsRheologyBiophysicsPhysicsColloidal PropertyWedge GeometryColloidal SystemPattern FormationSelf-assemblyApplied PhysicsNematic PhaseMedicineComputational Biophysics
We study the nematic phase of rodlike f d-virus particles confined to channels with wedge-structured walls. Using laser scanning confocal microscopy we observe a splay-to-bend transition at the single particle level as a function of the wedge opening angle. Lattice Boltzmann simulations reveal the underlying origin of the transition and its dependence on nematic elasticity and wedge geometry. Our combined work provides a simple method to estimate the splay-to-bend elasticity ratios of the virus and offers a way to control the position of defects through the confining boundary conditions.
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