Comparative amorphization quantification of two apatitic materials irradiated with heavy ions using XRD and RBS results
暂无分享,去创建一个
[1] D. Haas,et al. Fuels and targets for transmutation , 2002 .
[2] D. Gosset,et al. Determination of the helium diffusion coefficient in nuclear waste storage ceramics by a nuclear reaction analysis method , 2002 .
[3] C. Trautmann,et al. Study of the damage produced in CaF2 by swift heavy ion irradiation , 2002 .
[4] J. Krupa,et al. Simulation of the α-annealing effect in apatitic structures by He-ion irradiation: Influence of the silicate/phosphate ratio and of the OH−/F− substitution , 2001 .
[5] D. Cherniak. Rare earth element diffusion in apatite , 2000 .
[6] R. Ewing,et al. Ion irradiation-induced amorphization of six zirconolite compositions , 2000 .
[7] M. Rebetez,et al. Damage morphology of Kr ion tracks in apatite: Dependence on thermal annealing , 2000 .
[8] P. Sainsot,et al. Thermal diffusion of molybdenum in apatite , 2000 .
[9] M. Toulemonde. Nanometric phase transformation of oxide materials under GeV energy heavy ion irradiation , 1999 .
[10] M. Rebetez,et al. Damage morphology of Kr ion tracks in apatite: dependence on dE/dX , 1999 .
[11] S. Della-Negra,et al. A comparison between tracks created by high energy mono-atomic and cluster ions in Y3Fe5O12 , 1998 .
[12] S. Della-Negra,et al. Adhesion enhancement of thin gold films on sapphire by electronic processes using atomic and fullerene ions , 1998 .
[13] C. Duriez,et al. Actinide transmutation: new investigation on some actinide compounds , 1998 .
[14] Steven J. Zinkle,et al. Radiation effects in crystalline ceramics for the immobilization of high-level nuclear waste and plutonium , 1998 .
[15] W. J. Weber,et al. The kinetics of alpha-decay-induced amorphization in zircon and apatite containing weapons-grade plutonium or other actinides , 1997 .
[16] J. Dran,et al. Evidence of ionization annealing upon helium-ion irradiation of pre-damaged fluorapatite , 1997 .
[17] J. Lacout,et al. Synthesis of phosphate-silicate apatites at atmospheric pressure , 1997 .
[18] C. Trautmann,et al. Etching threshold for ion tracks in polyimide , 1996 .
[19] J. Nozieres,et al. Structural analysis of ferromagnetic latent tracks in RCo2 thin films (R = Y,Tm,Ce) by means of X-ray diffraction , 1996 .
[20] W. J. Weber,et al. Radiation effects in nuclear waste forms for high-level radioactive waste , 1995 .
[21] Michael Nastasi,et al. Handbook of modern ion beam materials analysis , 1995 .
[22] Meftah,et al. Swift heavy ions in magnetic insulators: A damage-cross-section velocity effect. , 1993, Physical review. B, Condensed matter.
[23] A. Dunlop,et al. Irradiation of Metallic Targets with High-Energy Heavy Ions: High Electronic Excitation Induced Effects , 1992 .
[24] K. Ouzegane,et al. Evidence of the contrasted fission-track clock behavior of the apatites from In Ouzzal carbonatites (northwest Hoggar): The low-temperature thermal history of an Archean basement , 1988 .
[25] O. W. Holland,et al. Dose rate dependence of damage clustering during heavy ion irradiation in Si , 1985 .
[26] J. F. Gibbons,et al. Ion implantation in semiconductors—Part II: Damage production and annealing , 1972 .