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NMR spectra simulation of the magnetic reorientation of a lyotropic nematic polymer cell in the Freedericksz and a non-Freedericksz twist geometry

机译:核磁共振光谱模拟的Freedericksz和非Freedericksz扭曲几何中的溶致向列型聚合物电池的磁重取向

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摘要

The NMR spectra simulation of the magnetic reorientation of a lyotropic nematic polymer cell in the Freedericksz and a non-Freedericksz twist geometry are presented. The non-linear equations that describe the dynamics of the magnetic reorientation of the director field in the case of a bounded sample between two parallel plates with planar boundary conditions and rigid anchoring are established in the frame of the Ericksen-Leslie continuum theory. The NMR spectra Simulation using the director spatial distributions that are solutions of these equations show that the spectral line shapes depend on the material parameters, the magnetic field intensity and, most significantly, on the distance between the plates.
机译:提出了在Freedericksz和非Freedericksz扭曲几何中的溶致向列型聚合物电池的磁重取向的NMR光谱模拟。在Ericksen-Leslie连续体理论的框架内,建立了描述在两个具有平面边界条件和刚性锚定的平行板之间的有限样本情况下,指向矢磁场重新定向动力学的非线性方程。使用这些方程式解的指向矢空间分布进行的NMR光谱模拟表明,光谱线的形状取决于材料参数,磁场强度,最重要的是取决于板之间的距离。

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