Three-Dimensional Hieratical Twist in Polar Fluids: Ultra-Low Field-Induced Chirality Regulation
Three-Dimensional Hieratical Twist in Polar Fluids: Ultra-Low Field-Induced Chirality Regulation
Recently discovered helical polar fluid adopts a spontaneous chiral symmetry breaking (CSB) driven by polarization escape and conformational chirality. Ferroelectric nematic and smectic phases are intrinsically chiral in the ground state and can be stabilized in an extrinsic twisted configuration through surface anchoring. Herein, we introduce extrinsic CSB as a novel technique in chiral engineering. To demonstrate this concept, we constructed the extrinsic structure of a helielectric conical mesophase (HEC)-multi-dimensional chiral system. Considering the challenges of controlling chirality at the macroscopic scale owing to magnetic fields, light, and fluid vortex motion, the proposed multi-dimensional chiral system enables chirality (twist) modulation through an ultralow electric field, thereby controlling unique diffraction pattern and circular polarized light-switching capabilities.
Hiroya Nishikawa、Dennis Kwaria、Atsuko Nihonyanagi、Fumito Araoka
物理学
Hiroya Nishikawa,Dennis Kwaria,Atsuko Nihonyanagi,Fumito Araoka.Three-Dimensional Hieratical Twist in Polar Fluids: Ultra-Low Field-Induced Chirality Regulation[EB/OL].(2025-05-30)[2025-06-24].https://arxiv.org/abs/2505.24628.点此复制
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