Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10632979 | Optical Materials | 2014 | 6 Pages |
Abstract
Silver nanoplate/hybrid silica gel glasses were prepared via the sol-gel technique. Analysis of ultraviolet-visible spectroscopy extinction spectra confirmed the successful incorporation of silver nanoplates into the hybrid silica gel glasses. The silver nanoplate/hybrid silica gel glass composites are completely noncrystalline because of their low doping level compared with that of the silica matrix. The nonlinear optical absorption behavior of the silver nanoplate/hybrid silica gel glass composites was studied via open-aperture Z-scan technique with 4Â ns pulse durations at 532Â nm and 1064Â nm. The nonlinear optical properties of silver nanoplates are maintained after they were introduced into silica gel glasses. Furthermore, the silver nanoplate/hybrid silica gel glasses exhibit intensity-dependent transformation from saturable absorption (SA) to reverse saturable absorption (RSA). The SA behavior at low excitation intensity can be attributed to the bleaching of ground-state surface plasmon resonance absorption induced by the retarded electronic relaxation process in solid-state gel glasses. By contrast, the RSA at high incident influence may have resulted from excited-state absorption and two-photon absorption.
Related Topics
Physical Sciences and Engineering
Materials Science
Ceramics and Composites
Authors
Chan Zheng, Wenzhe Chen, Xiaoyun Ye, Shuguang Cai, Xueqing Xiao,