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Theory and numerical simulation of field-induced director dynamics in confined nematics investigated by nuclear magnetic resonance

机译:核磁共振研究局域向列中场致指向矢动力学的理论和数值模拟

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摘要

We investigate the director reorientation in a nematic liquid crystal confined between two parallel plates and subjected to both a magnetic and an electric field. The permanent magnetic field is used first to align the director and, subsequently, to allow nuclear magnetic resonance (NMR) observation of the director response following the application of the electric field. For sufficiently strong electric fields, the director reorients and aligns parallel to the electric field. In this work we focus on the geometry where the electric and magnetic fields are orthogonal to each other. In this configuration the state of the system, immediately after applying the orthogonal electric field, is steady and unstable, at least in theory, since the director is assumed to be everywhere parallel to the magnetic field. In practice the real state of the system always deviates slightly from the perfect unstable steady state, which induces the start of the director reorientation toward the electric field. The nature and the characteristics of the initial deviation partially determine the reorientation process. In the classical approach, the small deviations from the ideal state are assumed to be due to thermal fluctuations, but this approach fails to account for some recent experimental results. For this reason we were led to investigate slightly non-uniform initial director configurations that are stable under the sole effect of the magnetic field but are sufficient to break the ideal unstable steady state created with the application of the orthogonal electric field. Such non-uniformities must be local or distributed over very small sample volumes, since their effects on the equilibrium NMR spectrum (before the application of the electric field) are not usually observed. In other words, we consider the presence of inversion walls in the bulk of the sample and local misalignments of the director on the boundary plates and investigate the effects of such non-uniformities on the response of the nematic to the application of the electric field, as observed by NMR. The model we propose, including such effects in parallel with thermal fluctuations, is able to account for the recently observed features of the field-induced director dynamics.
机译:我们研究了局限在两个平行板之间并受到磁场和电场作用的向列液晶中的指向矢重取向。首先使用永久磁场来对准指向矢,然后在施加电场后允许核磁共振(NMR)观察指向矢响应。对于足够强的电场,指向矢会重新定向并平行于电场对齐。在这项工作中,我们专注于电场和磁场相互正交的几何形状。在该配置中,至少在理论上,紧随施加正交电场之后的系统状态是稳定且不稳定的,因为假定指向矢在任何地方都平行于磁场。在实践中,系统的真实状态始终会偏离完美的不稳定稳态,这会导致指向矢朝向电场的重新定向开始。初始偏差的性质和特性部分决定了重新定向过程。在经典方法中,假设与理想状态的较小偏差是由于热波动引起的,但是该方法无法说明最近的一些实验结果。由于这个原因,我们被引导研究稍微不均匀的初始指向矢配置,这些配置在磁场的唯一作用下是稳定的,但是足以打破由正交电场产生的理想不稳定稳态。这种不均匀性必须是局部的或分布在很小的样品体积上,因为通常不会观察到它们对平衡NMR光谱的影响(在施加电场之前)。换句话说,我们考虑到样品中存在反转壁和边界板上导向器的局部未对准,并研究了这种不均匀性对向列型对电场施加响应的影响,如通过NMR观察到的。我们提出的模型(包括与热波动并行的这种影响)能够说明最近观测到的场诱导指向矢动力学的特征。

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  • 来源
    《Liquid Crystals》 |2010年第7期|p.747-771|共25页
  • 作者

    A.F. Martins; A. Véron;

  • 作者单位

    CENIMAT/I3N, Departamento de Ciência dos Materiais, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, Caparica, Portugal, 2829-516;

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