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Nonlinear response theory for Markov processes. III. Stochastic models for dipole reorientations

机译:马尔可夫过程的非线性响应理论。 III。 偶极重新定位的随机模型

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The nonlinear response of molecular systems undergoing Markovian stochastic reorientations is calculated up to fifth order in the amplitude of the external field. Time-dependent perturbation theory is used to compute the relevant response functions as in earlier treatments [G. Diezemann, Phys. Rev. E 85, 051502 (2012); 96, 022150 (2017)]. Here, we consider the reorientational motion of isolated molecules and extend the existing calculations for the model of isotropic rotational diffusion to the model of anisotropic rotational diffusion and to the model of rotational random jumps. Depending on the values of some model parameters, we observe a hump in the modulus of the nonlinear susceptibility for either of these models. Interestingly, for the model of rotational random jumps, the appearance of this hump depends on the way the coupling to the external field is modeled in the master equation approach. If the model of anisotropic rotational diffusion is considered, the orientation of the diffusion tensor relative to the molecular dipole moment and additionally the amount of anisotropy in the rotational diffusion constants determine the detailed shape of the nonlinear response. In this case, the height of the observed hump is found to increase with increasing "diffusional anisotropy." We discuss our results in relation to the features observed experimentally in supercooled liquids.
机译:在外部场的幅度下计算出Markovian随机重新定位的分子系统的非线性响应。时间依赖的扰动理论用于计算在早期治疗中的相关响应功能[G. Diezemann,Phys。 Rev.E 85,051502(2012); 96,022150(2017)]。在这里,我们考虑分离分子的重新定位运动,并延长各向同性旋转扩散模型的现有计算,并延长各向异性旋转扩散模型以及旋转随机跳跃模型。根据某些型号参数的值,我们在这些模型中观察非线性易感性模量的驼峰。有趣的是,对于旋转随机跳跃的模型,该驼峰的外观取决于耦合与外部场的方式以主方程方法建模。如果考虑各向异性旋转扩散模型,则扩散张量相对于分子偶极力矩的取向和旋转扩散常数中的各向异性的量决定了非线性响应的详细形状。在这种情况下,发现观察到的驼峰的高度随着“扩散各向异性的增加”而增加。我们讨论我们的结果与实验在过冷液体中观察到的特征的结果。

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