Polarization flutter, produced by an applied AC electric field drives an equilibrium ferroelectric nematic (NF) liquid crystal (LC) through a transition into a dissipative active ferroelectric nematic state exhibiting strong elasto-hydrodynamic intermolecular interaction. In such a fluttering ferroelectric, the typical equilibrium NF textural features adopted to reduce electrostatic energy, such as preferences for director bend, and alignment of polarization parallel to LC/air interfaces, are overcome, giving way to nonequilibrium conjugate structures in which director splay, and alignment of polarization normal to NF/air interfaces are preferred. Viewing the latter textures as those of an active nematic phase reveals that self-organization to reduce effective viscosity and resulting dissipation generates a flow-driven apparent nematic elasticity and interface structuring that dominates equilibrium LC elastic and surface forces.
@article{arxiv.2412.19061,
title = {An active hydroelastic liquid crystal phase of a fluttering ferroelectric nematic},
author = {Xi Chen and Cory Pecinovsky and Eva Korblova and Matthew A. Glaser and Leo Radzihovsky and Joseph E. Maclennan and David M. Walba and Noel A. Clark},
journal= {arXiv preprint arXiv:2412.19061},
year = {2024}
}
Comments
main paper (38 pages with 10 figures), supplement (6 pages)