[1] Liu Q M, He X, Zhou X, et al. Third-order nonlinearity in Ag-nanoparticles embedded 56GeS2-24Ga2S3-20KBr chalcohalide glasses. J. Non-Cryst. Solids, 2011, 357(11/12/13): 2320–2323.[2] Qu S L, Zhang Y W, Li H J, et al. Nanosecond nonlinear absorption in Au and Ag nanoparticles precipitated glasses induced by a femtosecond laser. Opt. Mater., 2006, 28(3): 259–265.[3] Zeng H D, Qiu J R, Gan F X. Preparation and optical properties of functional nanoparticles doped glasses. J.Chin. Ceram. Soc., 2003, 31(10): 974–979.[4] Xu X J, Li L D, Yu G, et al. Nanophotoswitches with a high on/off ratio based on a structure of indium tin oxide/organic insulator/metal. Appl. Phys. Lett., 2008, 92(4): 043302–1–3.[5] Auxier J M, Honkanen S, Morrell M M, et al. Small mode-size waveguides in quantum-dot-doped glasses by Ag-film ion exchange. J. Appl. Phys., 2006, 99(12): 126101–1–3.[6] Zijlstra P, Chon J W M, Gu M. Five-dimensional optical recording mediated by surface plasmons in gold nanorods. Nature, 2009, 459: 410–413. [7] Chen F F, Dai S X, Xu T F, et al. Surface-plasmon enhanced ultrafast third-order optical nonlinearities in ellipsoidal gold nanoparticles embedded bismuthate glasses. Chem. Phys. Lett., 2011, 514(1/2/3): 79–82. [8] Wang D W, Ren H X, Guo S J, et al. Fabrication of Ag-doped Na2O-B2O3-BiO2 glass by Sol-Gel method. J. Univ. Sci. Technol. B, 2003, 25(3): 245–247.[9] Kiran P P, De G, Rao D N. Nonlinear optical properties copper and silver nanoclusters in SiO2 Sol-Gel films. IEE Proc.-Circuits Devices Syst., 2003, 150(6): 559–562.[10] Yang X Y, Xiang W D, Liu H T, et al. Microstructures and the third-order optical nonlinearities of semimetal Bi nanocrystals in the sodium borosilicate glass. Mater. Lett., 2011, 65(12): 1959–1962.[11] Yang X C, Dong Z W, Liu H X, et al. Effects of thermal treatment on the third-order optical nonlinearity and ultrafast dynamics of Ag nanoparticles embedded in silicate glasses. Chem. Phys. Lett., 2009, 475(4/5/6): 256–259.[12] Yang X C, Du T L, Li Z H, et al. Influence of annealing conditions on nanoparticle silver formation in situ in silicate glass. J.Chin. Ceram. Soc., 2006, 34(12): 1481–1484.[13] Teng Y, Zhou J J, Luo F F, et al. Controllable space selective precipitation of copper nanoparticles in borosilicate glasses using ultrafast laser irradiation. J. Non-Cryst. Solids, 2011, 357(11/12/13) 2380–2383.[14] Lin J, Huang W H, Luo L Q. Nucleation and crystallization mechanism of TeO2-Nb2O5-AgCl glass under auxiliary electric field. J. Inorg. Mater., 2005, 20(3): 557–562.[15] Karthikeyan B, Thomas J, Kesavamoorthy R. Optical limiting with off-resonant excitations in Ag nanocompostie glasses: a Z-scan study. J. Non-Cryst. Solids, 2007, 353(13/14/15): 1346–1349.[16] Wang Y H, Peng S J, Lu J D, et al. Nonlinear optical properties of Ag nanocluster composite fabricated by 200keV negative ion implantation. Vacuum, 2009, 83(2): 412–415.[17] Joseph B, Suchand S C S , Sekhar B R, et al. Nonlinear optical properties of MeV and keV ion beam synthesized Ag nanoclusters. Nuclear Instruments and Methods in Physics Research B, 2007, 265(2): 631–636.[18] Borsella E, De M G, Caccavale F. Silver cluster formation in ion-exchanged waveguides: processing technique and phenomenological model. J.Non-Cryst.Solids, 1999, 253(1): 261–267.[19] Jiang C Z, Song L, Ren F, et al. Theoretical simulation and experimental research of the optical absorption spectra of Ag, Cu ion implantation in silica glass. J. Wuhan Univ.(Nat.Sci.Ed ), 2004, 50(1): 43–46.[20] Shi J Z, Jin Y L, Li Y L, et al. SERS study of triangular silver nanoplates prepared by photoinduced conversion method. Acta Photonica Sinica, 2010, 39(8): 1510–1514.[21] Yang X C, Li Z H, Li W J, et al. Optical nonlinearity and ultrafast dynamics of ion exchanged silver nanoparticles embedded in soda-lime silicate glass.Chin. Sci. Bull., 2008, 53(5): 695–699. [22] Qu S L, Zhao C J, Gao Y C, et al. Nonlinear absorptions in Au-nanoparticles-precipitated glass induced by a femtosecond laser. Acta Phys. Sinica, 2005, 54(1): 139–143.[23] Yang X Y, Xiang W D, Zhao H J, et al. Nonlinear saturable absorption of the sodium borosilicate glass containing Bi2S3 nanocrystals using Z-scan technique. J. Alloys Compd., 2011, 509(26): 7283–7289. |