中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Size-dependent off-resonant nonlinear optical properties of gold nanoparticles and demonstration of efficient optical limiting

文献类型:期刊论文

作者Y.Fu; R.A.Ganeev; P.S.Krishnendu; C.Y.Zhou; K.S.Rao
刊名Optical Materials Express
出版日期2019
卷号9期号:3页码:976-991
关键词reverse-saturable absorption,au nanoparticles,scattering,refraction,nanorods
ISSN号2159-3930
DOI10.1364/ome.9.000976
英文摘要There are different possibilities for the applications of gold nanoparticles in various areas of optoelectronics. Hem we report the nonlinear optical studies of chemically prepared gold nanoparticle suspensions using femtosecond pulses. The nonlinear refractive indices, nonlinear absorption coefficients, and saturated intensities of the nanoparticles of different sizes are measured at the wavelengths of 400 and 800 nm. We also demonstrate the optical limiting of 800 nm. 60 fs pulses during propagation through these suspensions. The competition of saturable and reverse saturable absorption in the case of 400 nm radiation is analyzed. The intensity-dependent transformation from saturable absorption to reverse saturable absorption indicates that these gold nanoparticles can be useful for eye protection, pulse shaping and passive mode locking. (C) 2019 Optical Society of America under the terms of the OSA Open Access Publishing Agreement
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语种英语
源URL[http://ir.ciomp.ac.cn/handle/181722/63387]  
专题中国科学院长春光学精密机械与物理研究所
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Y.Fu,R.A.Ganeev,P.S.Krishnendu,et al. Size-dependent off-resonant nonlinear optical properties of gold nanoparticles and demonstration of efficient optical limiting[J]. Optical Materials Express,2019,9(3):976-991.
APA Y.Fu,R.A.Ganeev,P.S.Krishnendu,C.Y.Zhou,&K.S.Rao.(2019).Size-dependent off-resonant nonlinear optical properties of gold nanoparticles and demonstration of efficient optical limiting.Optical Materials Express,9(3),976-991.
MLA Y.Fu,et al."Size-dependent off-resonant nonlinear optical properties of gold nanoparticles and demonstration of efficient optical limiting".Optical Materials Express 9.3(2019):976-991.

入库方式: OAI收割

来源:长春光学精密机械与物理研究所

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