Cholestric bubbles as localized vortices: theory and experiments

M. Clerc, G. González-Cortés, S. Echeverría-Alar
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Abstract

Particle-type solutions are generic behaviors in out-of-equilibrium systems. These localized states are characterized by a discrete set of parameters such as position, width, and height. Even these solutions can have topological charges, localized vortices, which enriches the solutions and strengthens their respective stability. These solutions are characterized by exhibiting vorticity surrounded by a homogeneous state without vorticity. Frustrated chiral liquid crystals are a natural habitat for localized vortices, cholesteric bubbles. Here we study the emergence of chiral bubbles in the winding/unwinding transition of a chiral liquid crystal cell with homeotropic anchoring. Experimentally, we show that this winding/unwinding transition is subcritical in nature when one modifies the temperature, which also generates the emergence of spherulites through the contraction of cholesteric labyrinthine patterns. Theoretically, based on an amplitude equation inferred by symmetry arguments, we reveal the emergence of chiral bubbles from a cholesteric labyrinthine patterns.
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胆汁泡作为局部涡旋:理论与实验
粒子型解是非平衡系统中的一般行为。这些局部状态由一组离散的参数(如位置、宽度和高度)来表征。即使这些解也可以有拓扑电荷、局部涡,这丰富了解的内容,增强了它们各自的稳定性。这些解的特点是涡度被无涡度的均匀态所包围。受挫的手性液晶是局部漩涡、胆甾气泡的天然栖息地。本文研究了具有各向同性锚定的手性液晶胞在绕/解绕跃迁过程中出现的手性气泡。实验表明,当改变温度时,这种缠绕/解绕转变在本质上是亚临界的,这也通过胆甾迷路模式的收缩产生球粒的出现。从理论上讲,基于对称参数推导的振幅方程,我们揭示了胆甾迷宫图中手性气泡的出现。
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