Thakur Anil K, Kaur Sarabjot, Bawa Sukhwant S, Biradar Ashok M
Polymeric and Soft Material Section, National Physical Laboratory, Dr. K. S. Krishnan Road, New Delhi, India 110012.
Appl Opt. 2004 Oct 20;43(30):5614-7. doi: 10.1364/ao.43.005614.
Optical memory in a deformed-helix ferroelectric liquid crystal is proposed by deforming the helix under the application of a square-voltage pulse of known magnitude and frequency. This effect is based on the electromechanical effect of helix deformation due to the electric field. When the interaction between the electric field and the dipole is sufficiently strong, all of the dipoles align along the electric field. In such a situation the interlayer dipole-dipole interaction is strong enough to balance the elastic deformation energy. When the electric field is switched off, the molecules remain in a static, balanced state owing to the dipole-dipole interaction and hence the memory effect.
通过在已知幅度和频率的方电压脉冲作用下使螺旋变形,提出了一种在变形螺旋铁电液晶中的光学记忆效应。这种效应基于电场引起的螺旋变形的机电效应。当电场与偶极子之间的相互作用足够强时,所有偶极子都沿电场排列。在这种情况下,层间偶极子 - 偶极子相互作用足够强,足以平衡弹性变形能。当电场关闭时,由于偶极子 - 偶极子相互作用,分子保持在静态平衡状态,从而产生记忆效应。