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April 19, 2026Scientific Reports0 citationsOpen Access

Polarization-driven twisted states in ferroelectric nematic liquid crystals under confinement

ASAnna SavchenkoEGEbba GrönforsRTRachel Tuffin

Key Points

  • The study aims to investigate polarization-driven twist modes in ferroelectric nematic liquid crystals under varying confinement conditions.
  • Examined the ferroelectric nematic liquid crystal AUUQU-2-N in a wedge cell with varying thickness.
  • Analyzed the resulting director field configurations under different anchoring conditions.
  • Identified the critical thickness for transition from non-twisted to twisted director states.
  • Observed a uniform, non-twisted director field below 2 μm thickness.
  • Found a likely 2π-twisted director field above a critical thickness of about 5 μm.
  • Identified locally twisted configurations, termed 'mesotwisted', at intermediate thicknesses with zero total twist.

Abstract

Abstract Ferroelectric nematic liquid crystals (FNLC) are 3D fluids with a giant spontaneous electric polarization (P) in the order of several microcoulombs per centimeter squared. In an unconstrained sample this high P has recently been shown to twist the nematic director field in order to reduce the electrostatic energy P. Kumari et al. , Science 383, 1364 (2024). By studying an FNLC, namely AUUQU-2-N, in a wedge cell with continuously increasing thickness, we now show that the polarization-driven twist modes depend on the local distance d between the lower and the upper plates of the wedge. For planar and parallel anchoring conditions of the nematic director we find a uniform, non-twisted director field at small d below 2 m and a likely 2 -twisted director field above a certain critical thickness of about 5 m. At intermediate d we observe locally twisted director fields but with zero total twist between the lower and the upper surface. We coin these twisted director configurations with alternating twist sense ”mesotwisted”. In view of these polarization-driven twist instabilities in FNLCs, the uniform state at small d might be considered as a surface-stabilized ferroelectric nematic, an interesting analogy to surface stabilized ferroelectric chiral smectics.

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Cite This Study

Savchenko et al. (2026) studied this question.

synapsesocial.com/papers/69e473ff010ef96374d8fb1fhttps://doi.org/10.1038/s41598-026-48218-7
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Also Consider

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