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存在湍流时液晶的负粘度。

Negative viscosity of a liquid crystal in the presence of turbulence.

机构信息

Division of Applied Physics, Hokkaido University, Sapporo 060-8628, Japan.

Division of Electrical and Electronic Engineering, Oita University, Oita 870-1192, Japan.

出版信息

Phys Rev E. 2019 Jan;99(1-1):012701. doi: 10.1103/PhysRevE.99.012701.

Abstract

We report on the discovery of enormous negative viscosity in a nematic liquid crystal in the presence of turbulence induced by electric fields. As the negative viscosity in this system is so large, we are able to observe several phenomena originating from it. For example, we observe a spontaneous shear flow that rotates the upper disk of a rheometer, as well as the reversal of the rotational direction upon applying an external torque in the opposite direction. Hysteresis loops are also observed in the shear-stress-shear-rate curves, which is reminiscent of those seen for ferromagnetic and ferroelectric materials. The similarities between the phenomena observed for our system and ferroic materials are comprehensively demonstrated, although the two systems are fundamentally different in that the former is out of equilibrium. We elucidate the origin of the negative viscosity and propose a simple model that reproduces the phenomena observed in this active fluid.

摘要

我们报告了在电场引起的湍流存在的情况下,向列液晶中巨大负粘度的发现。由于该系统中的负粘度如此之大,我们能够观察到几种源自它的现象。例如,我们观察到自发的剪切流,它使流变仪的上圆盘旋转,以及在外力矩反向施加时旋转方向的反转。在剪切应力-剪切速率曲线上也观察到滞后回线,这让人联想到铁磁和铁电材料中观察到的那些。尽管两个系统在根本上是不同的,因为前者处于非平衡状态,但我们全面地展示了观察到的系统和铁电材料之间的现象的相似性。我们阐明了负粘度的起源,并提出了一个简单的模型,该模型再现了这种活性流体中观察到的现象。

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