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由电对流状态产生的弗雷德里克斯图案的早期时间演化。

Early time evolution of Freédericksz patterns generated from states of electroconvection.

作者信息

Funfschilling Denis, Dennin Michael

机构信息

Department of Physics and Astronomy, University of California at Irvine, 92697-4575, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 May;73(5 Pt 2):057201. doi: 10.1103/PhysRevE.73.057201. Epub 2006 May 11.

Abstract

We report on the early time ordering in a nematic liquid crystal subjected to a sudden change in an external ac electric field. We compare time evolution for two different initial states of electroconvection. Electroconvection is a highly driven state of a nematic liquid crystal involving convective motion of the fluid and periodic variations of the molecular alignment. By suddenly changing either the voltage or the frequency of the applied ac field, the system is brought to the same thermodynamic conditions. The time ordering of the system is characterized by the evolution of features of the power spectrum, including the average wave number, total power, and shape of the power spectrum. We observe that ordering of the system occurs faster after a sudden change in frequency than it does after a sudden change in voltage.

摘要

我们报道了向列型液晶在外部交流电场突然变化时的早期时间排序。我们比较了电对流两种不同初始状态的时间演化。电对流是向列型液晶的一种高度驱动状态,涉及流体的对流运动和分子排列的周期性变化。通过突然改变施加交流电场的电压或频率,使系统处于相同的热力学条件。系统的时间排序由功率谱特征的演化来表征,包括平均波数、总功率和功率谱形状。我们观察到,频率突然变化后系统的排序比电压突然变化后更快。

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