References |
Haglund, R.F., Ion implantation as a tool in the synthesis of practical third-order nonlinear optical materials (1998) Materials Science and Engineering A, 253, pp. 275-283; Takeda, Y., Lee, C.G., Kishimoto, N., Nonlinear optical properties of Cu nanoparticle composites fabricated by 60 keV negative ion implantation (2002) Nuclear Instruments and Methods B, 191, pp. 422-427; Endo, T., Kerman, K., Nagatani, N., Takamura, Y., Tamiya, E., Label-free detection of peptide nucleic acid-DNA hybridization using localized surface plasmon resonance based optical biosensor (2005) Analytical Chemistry, 77, pp. 6976-6984; Hutter, E., Fendler, J.H., Exploitation of localized surface plasmon resonance (2004) Advanced Materials, 16, pp. 1685-1706; Okamoto, T., Yamaguchi, I., Kobayashi, T., Local plasmon sensor with gold colloid monolayers deposited upon glass substrates (2000) Optics Letters, 25, pp. 372-374; Kneipp, K., Kneipp, H., Itzkan, I., Dasari, R.R., Feld, M.S., Surface-enhanced Raman scattering and biophysics (2002) J. Phys.: Cond. Matter, 14, pp. R597-R624; Plaksin, O.A., Takeda, Y., Amekura, H., Kishimoto, N., Electronic excitation and optical responses of metal-nanoparticle composites under heavy-ion implantation (2006) Journal of Applied Physics, 99 (4), pp. 0443071-04430710; Plaksin, O.A., Takeda, Y., Amekura, H., Umeda, N., Kono, K., Okubo, N., Kishimoto, N., Optical monitoring of nanoparticle formation during negative 60 keV Cu ion implantation into LiNbO3 (2005) Appl. Surface Sc., 241, pp. 213-217; Kishimoto, N., Okubo, N., Plaksin, O.A., Umeda, N., Lu, J., Takeda, Y., Stability of nanoparticles in LiNbO3 induced by negative Cu ions and ultrafast nonlinear optical property (2004) Nucl. Instr. and Methods B, 218, pp. 416-420; Plaksin, O.A., Takeda, Y., Amekura, H., Kono, K., Kishimoto, N., Stability of metal nanocomposites under heavy-ion bombardment of insulators (2006) Nucl. Instr. and Methods B, 250, pp. 220-224; Plaksin, O.A., Kono, K., Takeda, Y., Plaksin, S.O., Shur, V.Y., Kishimoto, N., Dynamic stability of metal-nanocluster composites based on LiNbO 3 under heavy-ion bombardment (2008) Ferroelectrics, 373, pp. 127-132; Plaksin, O.A., Takeda, Y., Kono, K., Umeda, N., Fudamoto, Y., Kishimoto, N., Surface and bulk properties of Cu nanocluster composites in LiNbO 3 (2005) Mater. Sc. & Eng. B, 120, pp. 84-87; Nikolaeva, E.V., Shur, V.Ya., Dolbilov, M.A., Shishkin, E.I., Kuznetsov, D.K., Sarmanova, M.F., Plaksin, O.A., Gavrilov, N.V., Formation of nanoscale domain structures and abnormal switching kinetics in lithium niobate with surface layer modified by implantation of copper ions (2008) Ferroelectrics, 374, pp. 73-77; Plaksin, O.A., Takeda, Y., Amekura, H., Kono, K., Suga, T., Kishimoto, N., Light emission during negative heavy ion implantation into lithium niobate and sapphire (2004) Vacuum, 74, pp. 367-371; Thompson, M., http://www.genplot.com/RUMP/index.html, available from; Möller, W., Eckstein, W., (1989) TRIDYN, , Vs. 4.0 by Department of Surface Physics, Max-Plank Institute of Plasma Physics. Garching, Germany |