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Plasmonic tip internally excited via an azimuthal vector beam for surface enhanced Raman spectroscopy 被引量:3
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作者 Min Liu Wending Zhang +8 位作者 Fan fan Lu Tianyang Xue Xin Li Lu Zhang Dong Mao Ligang Huang Feng Gao Ting Mei Jianlin Zhao 《Photonics Research》 SCIE EI CSCD 2019年第5期526-531,共6页
The synergy of a plasmonic tip and fiber-based structure light field excitation can provide a powerful tool for Raman examination. Here, we present a method of Raman spectrum enhancement with an Ag-nanoparticles(Ag-NP... The synergy of a plasmonic tip and fiber-based structure light field excitation can provide a powerful tool for Raman examination. Here, we present a method of Raman spectrum enhancement with an Ag-nanoparticles(Ag-NPs)-coated fiber probe internally excited via an azimuthal vector beam(AVB), which is directly generated in a few-mode fiber by using an acoustically induced fiber grating. Theoretical analysis shows that gap mode can be effectively generated on the surface of the Ag-NPs-coated fiber probe excited via an AVB. The experimental result shows that the intensity of Raman signal obtained with analyte molecules of malachite green by exciting the Ag-NPs-coated fiber probe via an AVB is approximately eight times as strong as that via the linear polarization beam(LPB), and the activity of the AVB-excited fiber probe can reach 10^-11 mol∕L, which cannot be achieved by LPB excitation.Moreover, the time stability and reliability are also examined, respectively. 展开更多
关键词 Raman spectroscopy azimuthal VECTOR beam(AVB) ag-nanoparticles(Ag-NPs) linear polarization beam(LPB)
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Introduction of Ag nanoparticles by picosecond LIFT to improve the photoelectric property of AZO films
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作者 许孝芳 李精博 +2 位作者 杨晓寒 潘森 毕勇 《Chinese Optics Letters》 SCIE EI CAS CSCD 2020年第4期102-108,共7页
The photoelectric properties of conductive films are improved by doping Ag on aluminum-doped zinc oxide(AZO)films by laser induced forward transfer(LIFT).Firstly,the picosecond laser induced transfer mechanism of Ag f... The photoelectric properties of conductive films are improved by doping Ag on aluminum-doped zinc oxide(AZO)films by laser induced forward transfer(LIFT).Firstly,the picosecond laser induced transfer mechanism of Ag films was revealed by numerical simulation;then,different-thickness Ag films were deposited on the AZO films by picosecond LIFT.When the film thickness is 30 nm and,50 nm,we have successfully obtained some Ag-AZO films with better optoelectronic properties by adjusting the laser parameters. 展开更多
关键词 LIFT surface treatment AZO film ag-nanoparticles optoelectronic property
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