Boundary Stability of a Nematic Liquid Bridge

POSTER

Abstract

We consider a nematic liquid crystal droplet in air confined between two parallel plates with homeotropic boundary conditions. The boundary conditions at the nematic-plate and nematic-air interfaces induce either a hedgehog or planar ring disclination within the nematic bridge, depending on the plate separation and bridge radius. We study the stability of the liquid crystal-air boundary of a nearly cylindrical nematic bridge by minimizing the Frank elastic energy.

Authors

  • William Barnes

    • Univ of Mass - Amherst
  • Christian Santangelo

    • Univ of Mass - Amherst
    • University of Massachusetts Amherst
    • Department of Physics, University of Massachusetts, Amherst
    • University of Massachusetts, Amherst
    • University of Massachusetts-Amherst