论文标题
Markov过程的非线性响应理论IV:重新审视的不对称双重潜在模型
Nonlinear response theory for Markov processes IV: The asymmetric double well potential model revisited
论文作者
论文摘要
在不对称的双井潜力(ADWP)的经典重新定位模型的框架中讨论了非相互作用偶极子的介电响应。在非线性方案中,该模型在静态响应中表现出一些特性。我们发现,对称双井潜在模型的饱和行为不会遵循langevin函数,仅在线性方向上恢复了标准结果。如果假定有限的不对称性,则发现非线性敏感性会在许多特征温度下改变符号,这些特征温度取决于不对称的幅度,如前所述,三阶和第五阶响应早期观察到。如果ADWP模型中屏障交叉的动力学被描述为两态模型,则可以为特征温度值提供分析表达式。从模型ADWP中Brownian运动的Fokker-Planck方程(数值)解决方案获得的响应的结果与高屏障的两态模型非常相似。对于小屏障,屏障交叉过程和井内弛豫之间没有明确的时间尺度分离,并且该模型表现出许多时间尺度。在这种情况下,低温下的频率依赖性线性敏感性由快速的孔内过渡和较高的温度下的屏障越过动力学主导。我们发现,对于非线性敏感性,后一个过程似乎更重要,并且孔内过渡仅在最低温度下起作用。
The dielectric response of non-interacting dipoles is discussed in the framework of the classical model of stochastic reorientations in an asymmetric double well potential (ADWP). In the nonlinear regime, this model exhibits some pecularities in the static response. We find that the saturation behavior of the symmetric double well potential model does not follow the Langevin function and only in the linear regime the standard results are recovered. If a finite asymmetry is assumed, the nonlinear susceptibilities are found to change the sign at a number of characteristic temperatures that depend on the magnitude of the asymmetry, as has been observed earlier for the third-order and the fifth-order response. If the kinetics of the barrier crossing in the ADWP model is described as a two-state model, we can give analytical expressions for the values of the characteristic temperatures. The results for the response obtained from a (numerical) solution of the Fokker-Planck equation for the Brownian motion in a model ADWP behaves very similar to the two-state model for high barriers. For small barriers no clearcut time scale separation between the barrier crossing process and the intra-well relaxation exists and the model exhibits a number of time scales. In this case, the frequency-dependent linear susceptibility at low temperatures is dominated by the fast intra-well transitions and at higher temperatures by the barrier crossing kinetics. We find that for nonlinear susceptibilities the latter process appears to be more important and the intra-well transitions play only role at the lowest temperatures.