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Dynamics of jumpwise temperature pitch variations in planar cholesteric layers for a finite strength of surface anchoring

机译:有限的表面锚固强度时,平面胆甾醇层中温度间距的跃变动力学

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The dynamics of pitch jumps in cholesteric layers with a finite surface anchoring strength under variations in temperature is investigated theoretically. General expressions are presented that connect the dynamics of pitch jumps with the parameters that determine the process, such as the viscosity, the specific form of the anchoring potential, and the dimensionless parameter S-d = K-22/Wd, where W is the depth of the anchoring potential, K-22 is the twist elastic modulus, and d is the layer thickness. It is found that the shape of the anchoring potential significantly influences the temporal behavior of the cholesteric helix in the process of a pitch jump. To illustrate this revealed dependence of the pitch jump dynamics on the shape and strength of the anchoring potential, the problem was investigated for two different models of the surface anchoring potential for a jump mechanism in connection with the director at the surface slipping over the barrier of the anchoring potential. Calculations for the unwinding (winding) of the helix in the process of the jump were performed to investigate the case of infinitely strong anchoring on one surface and finite anchoring on the other, which is important in applications. The results show that an experimental investigation of the dynamics of the pitch jumps will make it possible to distinguish different shapes of the finite strength anchoring potential and, in particular, it will provide a means for determining whether the well-known Rapini-Papoular anchoring potential is the best suited potential relevant to the dynamics of pitch jumps in cholesteric layers with a finite surface anchoring strength. The optimal conditions for experimental observation of these phenomena are briefly considered. (C) 2004 MAIK "Nauka / Interperiodica".
机译:理论上研究了在温度变化下具有有限表面锚固强度的胆甾醇层中沥青跳跃的动力学。提出了将俯仰跳变的动力学与确定过程的参数联系起来的通用表达式,例如粘度,锚固势的特定形式以及无量纲参数Sd = K-22 / Wd,其中W为深度锚定电位,K-22是扭转弹性模量,d是层厚。发现锚定电位的形状在音高跳跃过程中显着影响胆甾型螺旋的时间行为。为了说明俯仰跳动动力学对锚定电位的形状和强度的依赖关系,针对两种不同模型的跳变机制的表面锚定电位问题进行了研究,该模型与在地面滑过障碍物的导向器有关。锚固潜力。对跳跃过程中螺旋的展开(缠绕)进行了计算,以研究在一个表面上无限强锚固而在另一个表面上有限锚固的情况,这在应用中很重要。结果表明,对俯仰跳变动力学的实验研究将使区分有限强度锚固电位的不同形状成为可能,特别是,它将为确定著名的Rapini-Papoular锚固电位提供一种手段是与有限的表面锚固强度有关的胆甾醇层中的沥青跃变动力学相关的最合适的电势。简要考虑了对这些现象进行实验观察的最佳条件。 (C)2004 MAIK“ Nauka / Interperiodica”。

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