对各种应用于电压的反倾斜域的消灭能量消散机制
1National Institute of Technology, Akita College, School of Creative System Engineering, Department of Mechanical Engineering and Robotics, 1-1 Iijima, Bunkyo-cho, Akita, 011-8511, Japan.
Physical review. E
|May 17, 2024
概括
这项研究研究了液晶中逆倾域 (RTD) 灭绝过程中的能量消耗. 研究人员发现,在临界电压下,现象学粘度急剧增加,这与域壁分裂和导体场变形有关.
科学领域:
- 材料科学 材料科学 材料科学
- 物理 物理学 物理
- 软物质物理学 软物质物理学
背景情况:
- 当电压被应用时,均对齐的阴性液晶表现出一种称为反向倾斜域 (RTD) 的特征纹理.
- 这些RTDs收缩和消失,其域壁分裂成更高电压的离线线.
研究的目的:
- 为了研究RTD消灭动态的能量消耗机制.
- 通过实验确定该过程的现象学粘度 (Γ).
- 为了将粘度变化与电压诱导的结构转变相关联.
主要方法:
- 分析收缩RTDs的曲率半径 (R) 的时间依赖,使用方程R=A√(t0-t).
- 评估装配参数A作为应用电压的函数.
- 从参数A计算现象学粘度 (Γ).
主要成果:
- 装配参数A在变为恒定的前,随着电压的增加而线性减少.
- 现象学粘度 (Γ) 在临界电压下急剧增加一个数量级.
- 这个临界电压对应于域壁分裂的理论值.
结论:
- 能量消散机制显然与导体场局部变形有关.
- 在临界电压下观察到的粘度的急剧转变意味着液晶对应用场的反应中的相变.
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