论文标题
部分可观测时空混沌系统的无模型预测
Chiral ferronematic liquid crystals: a physico-chemical analysis of phase transitions and induced helical twisting
论文作者
论文摘要
评估了通过引入其他中源性和非中源性成分来改变甲型化学混合物的物理化学特性的可能性。该混合物由70:30重量比的DIO组成,并用标准的列5CB及其手性异构体CB15掺杂。这允许大幅降低甲基化温度范围,并在列列(N)和甲状腺素(NF)阶段诱导螺旋扭曲。 5CB和CB15对NF到N相变的影响几乎相同,但是在添加CB15后,各向同性过渡温度降低了。光传递与温度测量值显示在NF相中的透射率较低,这可能是由于域边界上的散射。在NF -n转变附近,在加热和冷却方面既明显较低的透射率,又表明了分子重新定位特征的复杂特征。在手性NF(N*F)系统中,使用Grandjean-Cano楔子记录了螺旋扭曲,在N*和N*F阶段冷却时,螺旋螺距会减少。在冷却模式下,瞬态起伏在n*f相中出现。在不同温度下拍摄的POM图像支持了氟化学过渡的复杂图像。
A possibility was assessed to modify physico-chemical properties of ferronematic mixtures by introducing additional mesogenic and non-mesogenic components. The mixture, consisting of RM734 and DIO at the 70:30 weight ratio of the components, was doped with standard nematic 5CB and its chiral isomer CB15. This allowed a substantial lowering of the ferronematic temperature range, as well as induction of helical twisting in both nematic (N) and ferronematic (NF) phases. The effects of 5CB and CB15 on the NF to N phase transition were nearly identical, but the isotropic transition temperature decreased more strongly upon addition of CB15. Optical transmission vs. temperature measurements showed lower transmittance in the NF phase, probably due to scattering on the domain boundaries. In the vicinity of the NF - N transition, a noticeable range of anomalously low transmission was noted both on heating and cooling, suggesting a complex character of molecular reorientation features. In the chiral NF (N*F) system, helical twisting was recorded using Grandjean-Cano wedge, with the helical pitch decreasing upon cooling in both N* and N*F phases. In the cooling mode, transient undulations emerged in the N*F phase. The complex picture of the ferronematic transition is supported by POM images taken at different temperatures.