The smectic Z A phase: Antiferroelectric smectic order as a prelude to the ferroelectric nematic

Author:

Chen Xi1ORCID,Martinez Vikina1,Korblova Eva2ORCID,Freychet Guillaume3ORCID,Zhernenkov Mikhail3ORCID,Glaser Matthew A.1ORCID,Wang Cheng4,Zhu Chenhui4ORCID,Radzihovsky Leo1,Maclennan Joseph E.1ORCID,Walba David M.2ORCID,Clark Noel A.1

Affiliation:

1. Department of Physics and Soft Materials Research Center, University of Colorado, Boulder, CO 80309

2. Department of Chemistry and Soft Materials Research Center, University of Colorado, Boulder, CO 80309

3. Brookhaven National Laboratory, National Synchrotron Light Source-II, Upton, NY 11973

4. Advanced Light Source, Lawrence Berkeley National Laboratory, Berkeley, CA 94720

Abstract

We have structurally characterized the liquid crystal (LC) phase that can appear as an intermediate state when a dielectric nematic, having polar disorder of its molecular dipoles, transitions to the almost perfectly polar-ordered ferroelectric nematic. This intermediate phase, which fills a 100-y-old void in the taxonomy of smectic LCs and which we term the “smectic Z A ,” is antiferroelectric, with the nematic director and polarization oriented parallel to smectic layer planes, and the polarization alternating in sign from layer to layer with a 180 Å period. A Landau free energy, originally derived from the Ising model of ferromagnetic ordering of spins in the presence of dipole–dipole interactions, and applied to model incommensurate antiferroelectricity in crystals, describes the key features of the nematic–SmZ A –ferroelectric nematic phase sequence.

Funder

National Science Foundation

DOE

Colorado Office of Economic Development and International Trade

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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