Director Field Configurations around a Spherical Particle in a Nematic Liquid Crystal
arXiv:cond-mat/9811229 · doi:10.1007/s100510050860
Abstract
We study the director field around a spherical particle immersed in a uniformly aligned nematic liquid crystal and assume that the molecules prefer a homeotropic orientation at the surface of the particle. Three structures are possible: a dipole, a Saturn-ring, and a surface-ring configuration, which we investigate by numerically minimizing the Frank free energy supplemented by a magnetic-field and a surface term. In the dipole configuration, which is the absolutely stable structure for micron-size particles and sufficiently strong surface anchoring, a twist transition is found and analyzed. We show that a transition from the dipole to the Saturn ring configuration is induced by either decreasing the particle size or by applying a magnetic field. The effect of metastability and the occurence of hysteresis in connection with a magnetic field are discussed. The surface-ring configuration appears when the surface-anchoring strength W is reduced. It is also favored by a large saddle-splay constant K_24. A comparison with recent experiments by Poulin et al. gives a lower bound for W, i.e., W > 0.6 erg/cm^2 for the interface of water and pentylcyanobiphenyl (5CB) in the presence of the surfactant sodium dodecyl sulfate.
11 pages, Revtex, 16 eps figures, submitted to Eur. Phys. J. B
Cited by in corpus (38)
- Transport of Particles in Liquid Crystals
- Computer simulation of topological defects around a colloidal particle or droplet dispersed in a nematic host
- Defect structures and torque on an elongated colloidal particle immersed in a liquid crystal host
- Liquid crystals boojum-colloids
- Simulating Particle Dispersions in Nematic Liquid-Crystal Solvents
- Drag on particles in a nematic suspension by a moving nematic-isotropic interface
- Topological Defects in Nematic Droplets of Hard Spherocylinders
- Rotational and translational diffusion of anisotropic gold nanoparticles in liquid crystals controlled by varying surface anchoring
- Elastic colloidal monopoles and reconfigurable self-assembly in liquid crystals
- Defect configurations and dynamical behavior in a Gay-Berne nematic emulsion
- Theory of Elastic Interaction of the Colloidal Particles in the Nematic Liquid Crystal Near One Wall and in the Nematic Cell
- Tunable colloid trajectories in nematic liquid crystals near wavy walls
- Shape-controlled orientation and assembly of colloids with sharp edges in nematic liquid crystals
- Minimizers of the Landau-de Gennes energy around a spherical colloid particle
- Experimental realization of the "lock-and-key" mechanism in liquid crystals
- Effective interactions of colloids on nematic films
- A Smooth Interface Method for Simulating Liquid Crystal Colloid Dispersions
- Colloidal dipolar interactions in 2D smectic C films
- Stokes-Einstein diffusion of colloids in nematics
- Q-tensor model for electrokinetics in nematic liquid crystals
- Effective pair interactions between colloidal particles at a nematic-isotropic interface
- Theory of elastic interaction between colloidal particles in the nematic cell in the presence of the external electric or magnetic field
- Colloidal particles at a nematic-isotropic interface: effects of confinement
- Modeling Dipolar and Quadrupolar Defect Structures generated by Chiral Islands in Freely-Suspended Liquid Crystal Films
- Motion, creation and annihilation of disclinations in multi-domain structured nematic liquid crystal cells
- Transformation between elastic dipoles, quadrupoles, octupoles and hexadecapoles driven by surfactant self-assembly in nematic emulsion
- Self-assembly of colloidal particles in deformation landscapes of electrically driven layer undulations in cholesteric liquid crystals
- Liquid-crystal enabled electrophoresis: Scenarios for driving and reconfigurable assembling of colloids
- Structure of a liquid crystalline fluid around a macroparticle: Density functional theory study
- Elastic octopoles and colloidal structures in nematic liquid crystals
- The saturn ring effect in nematic liquid crystals with external field: effective energy and hysteresis
- Flavour Fields in Steady State: Stress Tensor and Free Energy
- Effective triplet interactions in nematic colloids
- Shear dynamics of an inverted nematic emulsion
- Chiral, Topological, and Knotted Colloids in Liquid Crystals
- Light scattering by a metallic nanoparticle coated with a nematic liquid crystal
- Hydrodynamics of a disk in a thin film of weakly nematic fluid subject to linear friction
- Dynamics of a simple model microswimmer in an anisotropic fluid: implications for alignment behavior and active transport in a nematic liquid crystal