Shvetsov S A, Orlova T, Emelyanenko A V, Zolot'ko A S, Ong H L
Opt Express. 2022 Dec 19;30(26):47909-47920. doi: 10.1364/OE.478321.
Liquid crystals are of great interest in the field of nonlinear optics due to their efficient response to low intensity light fields. Here we present a new, to the best of our knowledge, mechanism of a nonlinear optical response which is observed for a dye-doped dual-frequency nematic liquid crystal. The local increase in temperature caused by the absorption of light beam in the liquid crystal medium leads to spatial variation and inversion of the sign of the dielectric anisotropy. When an alternating current electric field with a frequency close to the cross-over frequency is applied to the liquid crystal cell, the planar orientation sustains at the beam periphery, but elastic deformation occurs in the irradiation region. In the case of a dye dopant with negative absorption dichroism, a first-order orientational transition with large bistability region is obtained.
由于液晶对低强度光场具有高效响应,因此在非线性光学领域备受关注。据我们所知,这里我们展示了一种新的非线性光学响应机制,该机制在染料掺杂的双频向列型液晶中被观察到。液晶介质中光束吸收导致的局部温度升高会引起介电各向异性符号的空间变化和反转。当向液晶盒施加频率接近交叉频率的交变电场时,平面取向在光束周边得以维持,但在照射区域会发生弹性变形。对于具有负吸收二向色性的染料掺杂剂,可获得具有大双稳区域的一级取向转变。