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Microscopic vs. macroscopic origin of the Lehmann effect in cholesteric liquid crystals

机译:胆甾型液晶中雷曼效应的微观和宏观起源

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摘要

In a recent letter (EPL 97, 36006 (2012)), we have shown that the Leslie thermomechanical coupling cannot alone explain the Lehmann effect (namely the rotation of cholesteric droplets when they are subjected to a temperature gradient). This result was obtained by measuring in a compensated cholesteric mixture the "Lehmann coefficient" as a function of temperature both below and at the transition to the isotropic liquid. In this article, we detail these experiments and present new ones performed with other compensated mixtures and a diluted cholesteric mixture. The new results confirm the macroscopic origin of the Lehmann effect, in contrast to the Leslie thermomechanical effect that is clearly of microscopic origin.
机译:在最近的一封信中(EPL 97,36006(2012)),我们已经表明,莱斯利(Leslie)热机械耦合无法单独解释莱曼效应(Lehmann effect)(即,当胆甾醇液滴经受温度梯度时,其旋转)。通过在补偿的胆甾型混合物中测量“李曼系数”随温度的变化以及在向各向同性液体转变时的温度,可以得到该结果。在本文中,我们将详细介绍这些实验,并介绍使用其他补偿混合物和稀释胆甾醇混合物进行的新实验。与显然是微观起源的莱斯利热机械效应相反,新结果证实了雷曼效应的宏观起源。

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