[1] FU Sizu. GU Yuan. WANG Shiji. et al. Laser-driven shock stability in AI and shock compressibilities of Fe up to 0.8 TPa and SiO2 up to 0.4 TPa[J]. Phys. Plasma, 1995, 2(9): 3461-3465
[3] GU Yuan. WANG Gangyong. FU Sizu, et al. Shock abiabat measurements on copper in the pressure range from 0.4 to 0.8 TPa [J]. High Power Laser and Particle Beams. 1991, 3(1): 1-10(in Chinese).
[4] FU Sizu. GU Yuan. WU Jiang, et al. Laser driven shock stability in ultrahigh pressure equation of state[J]. Acta Physica Sinica, 1995, 44(7):1103-1112(in Chinese).
[5] KNUDSON M D, ASAY J R, DEENEY C, et al. Adiabatic release measurements in aluminum from 240 to 500 GPa states on the principal Hugoniot [J]. Appl. Phys. 2005, 97:073514
[6] ROTHMAN S D, PARKER K, ROBINSON C, et al. Measurement of a release adiabatic ~8 Mbar in lead using magnetically driven flyer impact [J]. Phys. Plasmas,2004, 11(12): 5620-5625
[7] ROTHMAN S D, EVANS A M. HORSFIELD C J,et al. Impedance match equation of state experiments using indirectly laser-driven multimegabar shocks [J]. Phys Plasmas, 2002, 9(5): 1721-1733.
[8] KENNETH S. Inertial confinement fusion annual report [D],California: General Atomics, 1999.
[10] ZHANG Yinjiang, FANG Minggang. The study on the solid laser precise cutting techology[J]. Laser and Infrared, 2004, 34(3):191-192(in Chinese).