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首页> 外文期刊>The Journal of Chemical Physics >Single molecule translocation in smectics illustrates the challenge for time-mapping in simulations on multiple scales
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Single molecule translocation in smectics illustrates the challenge for time-mapping in simulations on multiple scales

机译:脊髓中的单分子易位示出了在多个尺度上模拟中的时间映射的挑战

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Understanding the connections between the characteristic dynamical time scales associated with a coarse-grained (CG) and a detailed representation is central to the applicability of the coarse-graining methods to understand molecular processes. The process of coarse graining leads to an accelerated dynamics, owing to the smoothening of the underlying free-energy landscapes. Often a single timemapping factor is used to relate the time scales associated with the two representations. We critically examine this idea using a model system ideally suited for this purpose. Single molecular transport properties are studied via molecular dynamics simulations of the CG and atomistic representations of a liquid crystalline, azobenzene containing mesogen, simulated in the smectic and the isotropic phases. The out-of-plane dynamics in the smectic phase occurs via molecular hops from one smectic layer to the next. Hopping can occur via two mechanisms, with and without significant reorientation. The out-of-plane transport can be understood as a superposition of two (one associated with each mode of transport) independent continuous time random walks for which a single time-mapping factor would be rather inadequate. A comparison of the free-energy surfaces, relevant to the out-of-plane transport, qualitatively supports the above observations. Thus, this work underlines the need for building CG models that exhibit both structural and dynamical consistency to the underlying atomistic model. Published by AIP Publishing.
机译:理解与粗粒(CG)相关联的特征动态时间尺度与详细表示的连接是粗磨削方法理解分子过程的适用性的核心。由于底层的自由能景观的平滑,粗糙晶体的过程导致加速动力学。通常,单个时间戳因素用于涉及与两个表示相关联的时间尺度。我们通过理想地适合此目的,批判性地检查这个想法。通过分子动力学模拟的单分子传输性能研究CG和含有含有脱脂剂的液晶,偶氮苯的原子表示,在椎体和各向同性相中模拟。椎相中的平面外动态通过从一个椎间次次次次晶层到接下来的分子跳跃发生。跳跃可以通过两个机制,有和没有显着的重新定向。平面外传输可以被理解为两个(与每种传输方式相关联的叠加),独立的连续时间随机散步,其中单个时间映射因子将是相当不充分的。与平面外传输相关的自由能表面的比较,定性支持上述观察结果。因此,这项工作强调了构建CG模型,其表现出对底层原子模型的结构和动态稠度。通过AIP发布发布。

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