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Are dipolar liquids ferroelectric? Simulation studies

机译:偶极液体是铁电的吗?模拟研究

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The observation of a very sharp low frequency spike in the hyper-Rayleigh spectrum (HRS) of strongly dipolar fluids, such as acetonitrile and water, has been interpreted as reflecting a very slowly relaxing component in the transverse dipole density. This suggestion is at variance with the expectation of the dielectric theory for an isotropic fluid and has led to the speculation that the slow relaxation is associated with the reorganization of ferroelectric domains. Very large-scale molecular-dynamics simulation (similar to 28 000 molecules) have been carried out using a three-site potential model of acetonitrile. The simulated fluid shows no suggestion of strong dipole correlations and domain structure. The dipole density correlations behave as predicted by the normal dielectric theory and their spectra do not show the low-frequency feature seen in the HRS. In order to examine the characteristics of the spectra which would be seen in a ferroelectric domain, the acetontrile model was transmuted to more closely resemble a Stockmayer-type fluid with the same dipole density and a ferroelectric phase was observed. In this phase the dielectric spectra show (i) a high-frequency spectral feature due to librational motion of the molecules within a domain, and (ii) slowly-relaxing longitudinal and transverse polar modes, again at variance from the experimental HRS characteristics.
机译:在强偶极流体(例如乙腈和水)的高瑞利光谱(HRS)中观察到非常尖锐的低频尖峰,已被解释为反映了横向偶极子密度中非常缓慢的松弛成分。该建议与各向同性流体的介电理论的期望不符,并导致人们推测慢弛豫与铁电畴的重组有关。使用乙腈的三位电势模型进行了非常大规模的分子动力学模拟(类似于28000个分子)。模拟流体没有显示出强偶极相关性和畴结构的迹象。偶极子密度相关的行为如正常介电理论所预测的那样,并且它们的频谱未显示HRS中的低频特征。为了检查在铁电域中会看到的光谱特征,将乙腈模型转变为更相似的偶极子密度相同的Stockmayer型流体,并观察到铁电相。在此阶段,介电谱显示(i)由于分子在域内的自由运动而产生的高频频谱特征,以及(ii)缓慢松弛的纵向和横向极化模式,同样与实验HRS特性有所不同。

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