论文标题
手性列液晶中扭曲状态的磁滞和释放的阈值:最小能量路径方法
Hysteresis and Freedericksz thresholds for twisted states in chiral nematic liquid crystals: Minimum-energy path approach
论文作者
论文摘要
我们研究了在细胞上施加的电场的手性列液晶(CNLC)中亚稳态结构分支之间的最小能量途径(MEP)。通过执行稳定性分析,我们发现,对于非逐步半转数的分支,Freedericksz跃迁的阈值(临界)电压是自由扭曲波数的越来越多的功能。阈值电压的曲线取决于弹性各向异性,并确定零场临界扭曲数字,而平面外波动不稳定CNLC螺旋。对于通过一阶马鞍点的每个MEP,我们将能量屏障计算为鞍点和施加场不同值下的初始结构之间的能量差。在我们的计算中,下一步的MEP的初始近似是由在上一步中获得的MEP确定的,因此发现能量屏障的电场依赖性显示出磁滞。这是平面和涉及平面外导体变形的倾斜结构之间的鞍点配置的电驱动型的磁滞。事实证明,与二阶Freedericksz过渡相比,这种过渡是一级的,我们研究了它如何依赖于Zenithal锚定能强度。
We study minimum-energy pathways (MEPs) between the branches of metastable helical structures in chiral nematic liquid crystals (CNLCs)subjected to the electric field applied across the cell. By performing stability analysis we have found that, for the branches with non-vanishing half-turn number, the threshold (critical) voltage of the Freedericksz transition is an increasing function of the free twisting wave number. The curves for the threshold voltage depend on the elastic anisotropy and determine the zero-field critical free twisting number where the director out-of-plane fluctuations destabilize the CNLC helix. For each MEP passing through a first order saddle point we have computed the energy barrier as the energy difference between the saddle-point and the initial structures at different values of the applied field. In our calculations, where the initial approximation for a MEP at the next step was determined by the MEP obtained at the previous step, the electric field dependence of the energy barrier is found to exhibit the hysteresis. This is the hysteresis of electrically driven transition of the saddle-point configuration between the planar and the tilted structures involving out-of-plane director deformations. It turned out that, by contrast to the second-order Freedericksz transition, this transition is first order and we have studied how it depends on the zenithal anchoring energy strength.