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Equation of state and intermolecular interactions in fluid hydrogen from Brillouin scattering at high pressures and temperatures

机译:在高压和高温下布里渊散射引起的氢流体中的状态方程和分子间相互作用

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摘要

Brillouin scattering spectra of fluid hydrogen were measured at high pressures (1 to 13 GPa) and temperatures (293 to 526 K). From these sound velocity data together with previously reported volume and ultrasonic velocity data at low pressures and temperatures, we determined a Benedict-type P-V-T equation of state valid for fluid hydrogen up to the maximum pressures and temperatures of this study with an average deviation of 1.0% from the new and previously published experimental data. Using the equation of state, the pressure and temperature dependences of thermodynamic properties were calculated. We examined three types of intermolecular potentials for fluid hydrogen, and found that the Hemley–Silvera–Goldman potential gives superior fits to the experimentally derived equation of state over a wide temperature range above 6 GPa. Discrepancies found in the high temperature range at low pressures provide additional constraints on determination of the intermolecular potential. ©2003 American Institute of Physics.
机译:在高压(1至13 GPa)和温度(293至526 K)下测量流体氢的布里渊散射光谱。根据这些声速数据以及先前报告的在低压和低温下的体积和超声速度数据,我们确定了本尼迪克特型PVT状态方程,该方程对流体氢直至本研究的最大压力和温度均有效,平均偏差为1.0 %来自新的和先前发布的实验数据。使用状态方程,计算了热力学性质的压力和温度依赖性。我们研究了三种类型的氢态分子间电势,发现Hemley–Silvera–Goldman电势在6 GPa以上的宽温度范围内,都非常适合通过实验得出的状态方程。在低压下高温范围内发现的差异为确定分子间电势提供了其他限制。 ©2003美国物理研究所。

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