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High frequency dynamics and structural relaxation process in liquid ammonia

机译:液氨中的高频动力学和结构弛豫过程

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The dynamic structure factor S(Q,omega)of liquid ammonia has been measured by inelastic x-ray scattering in the terahertz frequency region as a function of the temperature in the range of 220-298 K at a pressure P=S5 bars.The data have been analyzed using the generalized hydrodynamic formalism with a three term memory function to take into account the thermal,the structural,(alpha)and the microscopic(mu)relaxation processes affecting the dynamics of the liquid.This allows to extract the temperature dependence of the structural relaxation time(tau_(alpha))and strength(DELTA_(alpha)).The former quantity follows an Arrhenius behavior with an activation energy E_a =2.6+0.2 kcal/mol,while the latter is temperature independent suggesting that there are no changes in the interparticle potential and arrangement with T.The obtained results,compared with those already existing in liquid water and liquid hydrogen fluoride,suggest the strong influence of the connectivity of the molecular network on the structural relaxation.
机译:液态氨的动态结构因子S(Q,ω)已通过太赫兹频率区域中的非弹性X射线散射测量,在220°C至298K K的压力下,温度为P = S5 bar。使用具有三项记忆功能的广义流体力学形式主义对数据进行了分析,以考虑影响液体动力学的热,结构,α和微观弛豫过程。这可以提取温度依赖性结构弛豫时间(tau_α)和强度(DELTA_α)的关系。前者遵循Arrhenius行为,其活化能E_a = 2.6 + 0.2 kcal / mol,而后者与温度无关,表明存在与液态水和液态氟化氢中已经存在的结果相比,所获得的结果表明分子网络的连通性具有强大的影响。 n结构松弛。

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