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MONITORING ULTRASLOW MOTIONS IN ORGANISED LIQUIDS NMR Experiments and computer simulations

机译:监测有组织液体NMR实验和计算机模拟中的超声运动

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The interest to liquid crystals confined in porous materials has greatly increased in recent years due to their important applications in new electro-optic technologies Confinements by pores and surface interactions produce strong effects on the properties of liquid crystalline systems both below and above the bulk clearing point. The aim of this work is the study of a surface induced orientational anisotropy of constrained liquid crystals above the nematic-isotropic transition temperature on the basis of the stimulated echo experiments and the computer simulations. Surface effects are strongest in the near vicinity of the wall. In this work our attention will be focused on the materials with pore sizes of a few nanometer much less studied than the materials with relatively big pores. In liquids, the modulations of dipolar interaction by stochastic molecular motions determine the most important mechanisms of relaxation. We present the computer simulations of random walks constrained by uneven surface aiming at a numerical evaluation of the correlation function of spherical harmonics proportional to a reduced dipolar auto-correlation function.
机译:在多孔材料限于液晶的兴趣在近年来有很大增加,由于通过孔和表面相互作用在新电光技术接产其重要的应用上产生低于和高于散装清亮点液晶系统的性质强烈影响。本作作品的目的是基于刺激的回声实验和计算机模拟的基础上研究对向上的液晶的表面诱导的液晶的定向各向异性。靠近墙壁附近最强的表面效应。在这项工作中,我们的注意力将集中在具有孔径的孔径的材料,比孔隙相对大的材料更少研究。在液体中,随机分子动作的偶极相互作用的调节决定了最重要的松弛机制。我们介绍了由不均匀表面限制的随机步道的计算机模拟,旨在瞄准球形谐波与减小的偶极自动相关函数成比例的相关函数的数值评估。

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