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Equations of State and the Phase Diagram of Dielectric and Metallic Helium-4

机译:状态方程和电介质和金属氦气4的相图

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摘要

A new form of the semiempirical equation of state for the liquid phase of helium-4 is proposed that is based on the assumption that the structure of this phase consists of a mixture of dielectric and metallic components. It is postulated that solid dielectric helium with density higher than 5.3 g/cm_(3)becomes a metal. The values of the parameters of the equations of state for both solid phases and the liquid phase of helium are calculated. The unknown values of the initial data for helium are taken by analogy with the parameters for deuterium. The phase diagram, shock adiabat, isentropes, isotherms, and electrical conductivity in these processes are calculated with the use of the equations of state of solid and liquid phases of helium-4. The results of calculation are compared with experimental data in the range of pressures of up to 35 GPa for an isotherm, up to 150 GPa for a shock adiabat, up to 42 GPa for the melting curve, and up to 2000 GPa for isentropes, and showed quite satisfactory agreement. Numerical extrapolation of the melting curve is performed to a range of ultrahigh pressures of up to 8000 GPa.
机译:提出了一种新形式的氦-4的液相状态的半透明方程,其基于该阶段的结构由介电和金属组分的混合物组成的假设。假设密度高于5.3g / cm_(3)的固体介电氦成为金属。计算氦的固态相和液相的状态方程的参数值。通过类比氘的初始数据的未知值与氘的参数进行类比。通过使用氦-4的固态和液相方程的使用,计算这些方法中的相图,冲击药物,象内熵,等温和电导率。将计算结果与实验数据相比,在等温线的压力范围内,抗冲脂高达150GPa,熔化曲线最多42GPa,较多的素钻孔和2000GPa,表现出相当令人满意的协议。熔化曲线的数值外推是在高达8000gPa的超高压力范围内进行。

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