论文标题

通过介电光谱研究的铁电列的极性

Polar nature of the ferro-electric nematic studied by dielectric spectroscopy

论文作者

Yadav, Neelam, Panarin, Yuri P., Vij, Jagdish K., Jiang, Wanhe, Mehl, Georg H.

论文摘要

在频率范围为0.1 Hz至10 MHz的介电光谱范围内,在平面和同型对齐的细胞中研究了列内化合物DIO中的列神经转变。在此材料中确定了三个放松过程。所有三个放松过程均显示出介电强度和NX到NF转变的频率不连续性的大幅度跳跃,这表明它是一阶相变。与通常在较高频率下显示分子松弛过程的常规列液晶材料不同,该材料在相对较低的频率下显示了三个过程。发现这三个过程本质上是集体的。事实证明,最小频率过程是由于离子在培养基中的电导率所致,并且由于与文献中在文献中的错误报告不同,在对齐层处的电荷积累。最高频率的模式被证明是由于NF相中的铁电域引起的。它的介电强度在同型对齐的细胞中比平面对齐细胞高两个数量级。它的机制是软模式,就像在n阶段一样。事实证明,中间频率模式是由于培养基分子的相关性所致,正如在液体晶体cybotaccic簇中通常观察到的。

The nematic-nematic transitions in a nematic compound DIO are studied in homogeneously planar and homeotropic aligned cells using dielectric spectroscopy in the frequency range 0.1 Hz to 10 MHz over a wide range of temperatures. Three relaxation processes are identified in this material. All the three relaxation processes show large jumps in the dielectric strength and discontinuity in frequency at the NX to NF transition, indicative of it being a first order phase transition. Unlike a conventional nematic liquid crystalline material that usually shows molecular relaxation processes at higher frequencies, this material shows three processes at relatively lower frequencies. The three processes are found to be collective in nature. The least frequency process is proven to be due to the conductivity of ions in the medium and due to the accumulation of charge at the alignment layers unlike mistakenly reported in the literature otherwise. The mode at the highest frequency is proven to be due to the ferroelectric domains in the NF phase. This is evidenced by its dielectric strength two orders of magnitude higher in a homeotropic aligned cell than planar aligned cell. Its mechanism is soft mode like in the N phase. The intermediate frequency mode is proven to be due to the correlation of molecules of the medium as is normally observed in liquid crystalline cybotactic clusters.

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