Andrade-Silva I, Bortolozzo U, Castillo-Pinto C, Clerc M G, González-Cortés G, Residori S, Wilson M
Department of Physics, Facultad de Ciencias Físicas y Matemáticas, Millennium Institute for Research in Optics, Universidad de Chile, Casilla 487-3, Santiago, Chile.
UMR7010, CNRS, Université de Nice-Sophia Antipolis, Institut de Physique de Nice, 1361 Route des Lucioles, 06560 Valbonne, France.
Philos Trans A Math Phys Eng Sci. 2018 Nov 12;376(2135):20170382. doi: 10.1098/rsta.2017.0382.
Order-disorder phase transitions driven by temperature or light in soft matter materials exhibit complex dissipative structures. Here, we investigate the spatio-temporal phenomena induced by light in a dye-doped nematic liquid crystal layer. Experimentally, for planar anchoring of the nematic layer and high enough input power, photoisomerization processes induce a nematic-isotropic phase transition mediated by interface propagation between the two phases. In the case of a twisted nematic layer and for intermediate input power, the light induces a spatially modulated phase, which exhibits stripe patterns. The pattern originates as an instability mediated by interface propagation between the modulated and the homogeneous nematic states. Theoretically, the phase transition, emergence of stripe patterns and front dynamics are described on the basis of a proposed model for the dopant concentration coupled with the nematic order parameter. Numerical simulations show quite a fair agreement with the experimental observations.This article is part of the theme issue 'Dissipative structures in matter out of equilibrium: from chemistry, photonics and biology (part 2)'.
由温度或光驱动的软物质材料中的有序-无序相变呈现出复杂的耗散结构。在此,我们研究了染料掺杂向列相液晶层中光诱导的时空现象。实验上,对于向列相层的平面锚定以及足够高的输入功率,光异构化过程会引发由两相之间的界面传播介导的向列相-各向同性相转变。在扭曲向列相层的情况下以及中等输入功率时,光会诱导出一种空间调制相,其呈现出条纹图案。该图案源于由调制向列态与均匀向列态之间的界面传播介导的不稳定性。理论上,基于所提出的掺杂剂浓度与向列序参数耦合的模型描述了相变、条纹图案的出现以及前沿动力学。数值模拟与实验观测结果相当吻合。本文是主题特刊“非平衡态物质中的耗散结构:来自化学、光子学和生物学(第2部分)”的一部分。