Thapa Kamal, Paladugu Sathyanarayana, Lavrentovich Oleg D
Opt Express. 2024 Nov 4;32(23):40274-40282. doi: 10.1364/OE.541317.
Nematic liquid crystals exhibit nanosecond electro-optic response to an applied electric field which modifies the degree of orientational order without realigning the molecular orientation. However, this nanosecond electrically modified order parameter (NEMOP) effect requires high driving fields, on the order of 10 V/m for a modest birefringence change of 0.01. In this work, we demonstrate that a nematic phase of the recently discovered ferroelectric nematic materials exhibits a robust and fast electro-optic response. Namely, a relatively weak field of 2 × 10 V/m changes the birefringence by ≈ 0.04 with field-on and-off times around 1 μs. This microsecond electrically modified order parameter (MEMOP) effect shows a greatly improved figure of merit when compared to other electro-optical switching modes in liquid crystals, including the conventional Frederiks effect, and has a potential for applications in fast electro-optical devices such as phase modulators, optical shutters, displays, and beam steerers.
向列型液晶对施加的电场表现出纳秒级的电光响应,该电场会改变取向有序度,而不会使分子取向重新排列。然而,这种纳秒级电改性有序参数(NEMOP)效应需要高驱动场,对于0.01的适度双折射变化,驱动场约为10 V/m。在这项工作中,我们证明了最近发现的铁电向列型材料的向列相表现出强大而快速的电光响应。具体而言,相对较弱的2×10 V/m场在电场开启和关闭时间约为1 μs时,会使双折射改变约0.04。与液晶中的其他电光切换模式(包括传统的弗雷德里克斯效应)相比,这种微秒级电改性有序参数(MEMOP)效应的品质因数有了极大提高,并且在诸如相位调制器、光快门、显示器和光束转向器等快速电光器件中具有应用潜力。