AB INITIO SIMULATIONS FOR MATERIAL PROPERTIES ALONG THE JUPITER ADIABAT

被引:210
作者
French, Martin [1 ]
Becker, Andreas [1 ]
Lorenzen, Winfried [1 ]
Nettelmann, Nadine [1 ]
Bethkenhagen, Mandy [1 ]
Wicht, Johannes [2 ]
Redmer, Ronald [1 ]
机构
[1] Univ Rostock, Inst Phys, D-18051 Rostock, Germany
[2] Max Planck Inst Sonnensyst Forsch, D-37191 Katlenburg Lindau, Germany
关键词
conduction; diffusion; equation of state; planets and satellites: individual (Jupiter material properties); plasmas; EQUATION-OF-STATE; ROTATING SPHERICAL-SHELLS; HIGH-LATITUDE JETS; ELECTRICAL-CONDUCTIVITY; MOLECULAR-DYNAMICS; TRANSPORT-COEFFICIENTS; BULK VISCOSITY; GIANT PLANETS; ZONAL FLOW; HYDROGEN;
D O I
10.1088/0067-0049/202/1/5
中图分类号
P1 [天文学];
学科分类号
070403 [天体物理学];
摘要
We determine basic thermodynamic and transport properties of hydrogen-helium-water mixtures for the extreme conditions along Jupiter's adiabat via ab initio simulations, which are compiled in an accurate and consistent data set. In particular, we calculate the electrical and thermal conductivity, the shear and longitudinal viscosity, and diffusion coefficients of the nuclei. We present results for associated quantities like the magnetic and thermal diffusivity and the kinematic shear viscosity along an adiabat that is taken from a state-of-the-art interior structure model. Furthermore, the heat capacities, the thermal expansion coefficient, the isothermal compressibility, the Gruneisen parameter, and the speed of sound are calculated. We find that the onset of dissociation and ionization of hydrogen at about 0.9 Jupiter radii marks a region where the material properties change drastically. In the deep interior, where the electrons are degenerate, many of the material properties remain relatively constant. Our ab initio data will serve as a robust foundation for applications that require accurate knowledge of the material properties in Jupiter's interior, e.g., models for the dynamo generation.
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页数:11
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