Nellis W J, Weir S T, Mitchell A C. Metallization and Electrical Conductivety of Hydrogen in Jupiter [J]. Science, 1996, 273(16): 936-938.
[2]
Nellis W J, Holmes N C, Mitchell A C, et al. Shock Compression of Liquid Helium to 56 GPa [J]. Phys Rev Lett, 1984, 53(13): 1248-1251.
[3]
Toullec R L, Loubeyre P, Pinceaux J P. Refractive-Index Measurements of Dense Helium up to 16 GPa at T=298 K: Analysis of Its Thermodynamic and Electronic Properties [J]. Phys Rev B, 1989, 40(4): 2368-2378.
[4]
Aziz R A, Nain V P S, Carley J S, et al. An Accurate Intermolecular Potential for Helium, 1979 [J]. J Chem Phys, 1979, 70(9): 4330-4342.
[5]
Chang S Y, Boninsegni M. Ab intio Potentials and the Equation of State of Condensed Helium at High Pressure [J]. J Chem Phys, 2001, 115(6): 2629-2633.
[6]
Young D A, McMahan A K, Ross M. Equation of State and Melting Curve of Helium to Very High Pressure [J]. Phys Rev B, 1981, 24(5): 5119-5127.
[7]
Ross M, Young D A. Helium at High Density [J]. Phys Lett A, 1986, 118(9): 463-466.
[8]
Murrell N, Boucher E A. Properties of Liquids and Solutions [M]. John & Sons Ltd, 1982: 42-42.
[9]
Tian C L, Liu F Sh, Cai L C, et al. Many-Body Contributions to Cohesive Energy of Highly Compressed Solid 4He [J]. Chin Phys Lett, 2003, 20(5): 706-708.
[10]
Tian Ch L, Liu F Sh, Cai L C. Contributions of Four-Body Interactions to Compressibility of Solid Helium [J]. Acta Phys Sinica, 2003, 52(5): 1219-1221. (in Chinese)
Cai L C, Liu F Sh, Jing F Q. Theoretical Isothermal Compression Curve for Solid Helium [J]. Chinese Journal of High Pressure Physics, 1998, 12(2): 145-149. (in Chinese)
Meng Ch M, Jiao R Zh, Shi Sh Ch, et al. Theoretical Calculated Shock-Compression Properties for Liquid Helium [J]. Chinese Journal of High Pressure Physics, 2002, 16(1): 70-74. (in Chinese)