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Dipolar response and hydrogen-bond kinetics in liquid water in square-wave time-varying electric fields

机译:方波时变电场中液态水中的偶极响应和氢键动力学

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摘要

Non-equilibrium molecular dynamics simulations of liquid water have been performed at 298 K in the presence of external time-varying electric fields, approximating a square wave, of varying peak intensity (0.005-0.1 V/?) in the microwave to far-infrared frequency range (20-500 GHz). Significant non-thermal field effects were noted in terms of dipolar response and acceleration of hydrogen-bond kinetics. The coupling between the total dipole moment and the external field has been investigated and autocorrelation functions (ACFs) of both the total dipole moment and the average of the individual molecular dipole moment along the laboratory axis of the applied fields exhibited coupling, with the former showing a stronger coupling and the latter showing coupling to lower magnitude fields. The maximum alignment achieved has been computed as a function of field intensities and frequencies: the lower frequencies show a greater maximum alignment as the system had more time within each field cycle to respond. The normalised probability distribution and the hydrogen-bond ACFs have been computed: the ACF showed a clear effect over shortening the hydrogen-bond relaxation time. The field effects over the molecules' transitions from four to five hydrogen bonds have been computed. There was an enhancement of fewer molecules undergoing transitions and a dampening for a larger proportion of molecules, depending on the external fields' periods.
机译:在存在外部时变电场的情况下,液态水的非平衡分子动力学模拟已在298 K下发生,该电场近似于方波,且微波中的峰强度(0.005-0.1 V /?)变化为远红外频率范围(20-500 GHz)。从偶极响应和氢键动力学的加速方面注意到了显着的非热场效应。已经研究了总偶极矩与外部场之间的耦合,并且总偶极矩与沿所施加场的实验室轴的单个分子偶极矩的平均值的自相关函数(ACF)表现出耦合,前者表示耦合更强,而后者显示出耦合到较低幅度的场。已计算出的最大对准是场强和频率的函数:随着系统在每个场周期内有更多时间响应,较低的频率显示出更大的最大对准。计算出归一化的概率分布和氢键ACF:ACF在缩短氢键弛豫时间方面显示出明显的效果。计算了分子从四个氢键到五个氢键过渡的场效应。取决于外部场的周期,经历过渡的分子减少,而对较大比例的分子的阻尼增加。

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