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Quantitative experimental determination of the Landau-potential of chiral enantiomer doped ferroelectric liquid crystals

机译:手性对映体掺杂铁电液晶的Landau电位的定量实验测定

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The full Landau potential was determined for a ferroelectric liquid crystal doped with varying concentrations of the chiral dopant R1011 and its enantiomer S1011. A multi-curve fitting procedure using temperature and electric field dependent tilt angle and polarization data was employed to the generalized Landau model of ferroelectric liquid crystals. From this analysis the three Landau coefficients as well as the polarization-tilt coupling parameters were obtained as a function of dopant concentration and configuration. It is shown that the two most varied parameters are those of the first Landau coefficient alpha and the (chiral) linear polarization-tilt coupling constant C. The effect on the first Landau term is equivalent for the two dopants of opposite handedness indicating its achiral nature, while the effect on the (chiral) bilinear coupling term differs for the R1011 and S1011 dopant, increasing and decreasing the coupling between tilt and polarization respectively. This difference in the bilinear coupling term quantifiably evidences that the R1011 dopant increases and S1011 dopant reduces the inherent chirality in this system.
机译:对于掺杂有不同浓度的手性掺杂剂R1011及其对映异构体S1011的铁电液晶,确定了完全的朗道电势。使用与温度和电场相关的倾斜角和极化数据的多曲线拟合程序,将其应用于铁电液晶的广义Landau模型。通过该分析,获得了三个朗道系数以及偏振-倾斜耦合参数,这些参数是掺杂剂浓度和构型的函数。结果表明,两个变化最大的参数分别是第一朗道系数α和(手性)线性极化-倾斜耦合常数C。对于第一朗道项的影响等效于两种相反手性的掺杂剂,表明其非手性,尽管R1011和S1011掺杂剂对(手性)双线性耦合项的影响不同,但分别增加和减小了倾斜和极化之间的耦合。双线性耦合项的这种差异可量化地证明R1011掺杂剂增加而S1011掺杂剂减少了该系统中的固有手性。

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