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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Temperature Pitch Variations in Planar Cholesteric Layers: The Role of Fluctuations and Surface Anchoring
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Temperature Pitch Variations in Planar Cholesteric Layers: The Role of Fluctuations and Surface Anchoring

机译:平面胆甾醇层的温度变化:波动和表面锚固的作用

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The influence of thermodynamic fluctuations on temperature pitch variations in planar cholesteric samples with a finite surface anchoring energy is theoretically investigated in the framework of the continuum theory of liquid crystals. It is shown that taking fluctuations into account allows explanation of experimental observations, namely, the absence of a temperature pitch jump hysteresis in sufficiently thick samples and its existence in thin ones. A description of fluctuations, including two phenomenological parameters, is proposed. It allows us to predict temperature points at which the pitch jumps in the sample between two configurations, with the numbers of director half-turns differing by one, as a function of the anchoring energy, Frank elastic modulus, sample thickness, and temperature (or fluctuation energy). It is shown that performing precise measurements of the pitch versus the temperature in well-controlled samples should allow determination of the phenomenological constants and then prediction the influence of fluctuations on pitch jump parameters in samples of an arbitrary thickness and/or surface anchoring energy. The corresponding calculations are performed using the Rapini-Papoular anchoring potential. It is shown that the influence of fluctuations on the pitch variation is only negligible in sufficiently thin layers. It is also noted that the results obtained could be useful for investigating pitch jump dynamics in the future.
机译:理论上,在液晶连续理论的框架下,研究了热力学涨落对具有有限表面锚定能的平面胆甾型样品中温度间距变化的影响。结果表明,考虑到波动,可以解释实验结果,即在足够厚的样品中不存在温度变化跳变磁滞,而在较薄的样品中则存在温度变跳磁滞。提出了对波动的描述,包括两个现象学参数。它使我们能够根据锚定能量,Frank弹性模量,样品厚度和温度(或波动能量)。结果表明,在控制良好的样品中精确测量沥青相对于温度的变化,应该可以确定现象学常数,然后预测波动对任意厚度和/或表面锚定能量的样品中沥青跃变参数的影响。使用Rapini-Papoular锚定电位进行相应的计算。结果表明,波动对间距变化的影响只有在足够薄的层中才可以忽略不计。还应注意,所获得的结果对于将来研究俯仰跳动动力学可能是有用的。

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