Topological fine structure of smectic grain boundaries and tetratic disclination lines within three-dimensional smectic liquid crystals
arXiv:2201.01736 · doi:10.1039/D2CP00060A
Abstract
Observing and characterizing the complex ordering phenomena of liquid crystals subjected to external constraints constitutes an ongoing challenge for chemists and physicists alike. To elucidate the delicate balance appearing when the intrinsic positional order of smectic liquid crystals comes into play, we perform Monte-Carlo simulations of rod-like particles in a range of cavities with a cylindrical symmetry. Based on recent insights into the topology of smectic orientational grain boundaries in two dimensions, we analyze the emerging three-dimensional defect structures from the perspective of tetratic symmetry. Using an appropriate three-dimensional tetratic order parameter constructed from the Steinhardt order parameters, we show that those grain boundaries can be interpreted as a pair of tetratic disclination lines that are located on the edges of the nematic domain boundary. Thereby, we shed light on the fine structure of grain boundaries in three-dimensional confined smectics.
References in corpus (13)
- Topological Photonics
- Accurate determination of crystal structures based on averaged local bond order parameters
- Meso-scale turbulence in living fluids
- Topology and Dynamics of Active Nematic Vesicles
- Two-Dimensional Matter: Order, Curvature and Defects
- Smectics: Symmetry Breaking, Singularities, and Surfaces
- Particle-resolved topological defects of smectic colloidal liquid crystals in extreme confinement
- Structural Landscapes in Geometrically Frustrated Smectics
- Topological Hall effect in single thick SrRuO3 layers induced by defect engineering
- Defect patterns of two-dimensional nematic liquid crystals in confinement
- First order transition induced by topological defects in the O(3) principal chiral model
- Topological Defects in Systems with Two Competing Order Parameters: Application to Superconductors with Charge- and Spin-Density Waves
- Topology of orientational defects in confined smectic liquid crystals