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平面金属等离激元超材料对光学Tamm态及相关激射行为的增强作用 被引量:2
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作者 张振清 路海 +3 位作者 王少华 魏泽勇 江海涛 李云辉 《物理学报》 SCIE EI CAS CSCD 北大核心 2015年第11期120-125,共6页
本文对具有类EIR色散特性的平面金属等离激元超材料(planar plasmonic metamaterials,PPM)对光学Tamm态及相关激射行为的增强作用进行了研究.我们首先运用传输矩阵方法分析了利用PPM结构的色散来增强光学Tamm态对应模式电磁局域密度的... 本文对具有类EIR色散特性的平面金属等离激元超材料(planar plasmonic metamaterials,PPM)对光学Tamm态及相关激射行为的增强作用进行了研究.我们首先运用传输矩阵方法分析了利用PPM结构的色散来增强光学Tamm态对应模式电磁局域密度的可能性.其次,我们将具有类EIR特性的PPM与一维光子晶体(photonic crystal,PC)合在一起设计了一种平面等离激元超材料-光子晶体(PPM-PC)异质结构.研究发现,通过在电磁局域密度最高的PPM结构中(或附近)加入增益介质,可观察到比通常光学Tamm态更强的激射增强效应及更明显的单色性响应.这些特性使得这种PPM-PC结构有望被应用于低阈值激光器、荧光增强等方面. 展开更多
关键词 等离元超材料 激射增强效应 光学Tamm态
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Improved uniformity of deposited metallic layer on hybrid micro/nano-structured Si substrates fabricated by two-step laser ablation for SERS application
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作者 LI Long-fan ZHOU Rui +2 位作者 CUI Jing-qin YAN Huang-ping WANG Zhen-zhong 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第10期3312-3322,共11页
Surface-enhanced Raman scattering(SERS) has been widely used as an effective technique for lowconcentration molecules detections in the past decades. This work proposes a rapid and accessible process to fabricate SERS... Surface-enhanced Raman scattering(SERS) has been widely used as an effective technique for lowconcentration molecules detections in the past decades. This work proposes a rapid and accessible process to fabricate SERS-active substrates with high uniformity and controllability based on two-step laser ablation. Laser beams directly ablate the surface of Si, concurrently creating microstructures and ejecting molten materials caused by the thermal effect that nucleate in ambient air. The nuclei grow into nanoparticles and deposit over the surface. These nanoparticles,together with microstructures, improve the light collection efficiency of the SERS-active substrates. Especially after Au thin film deposition, these nanoparticles can provide nanogaps as hotspots for SERS. By orthogonal experiment design,laser processing parameters for better performances are determined. Compared with substrates fabricated by single 1064 nm master oscillator power amplifier(MOPA) laser ablation, substrates ablated by the primary 1064 nm MOPA laser and secondary UV pulsed laser show more uniform nanoparticles’ deposition over the surface. The optimized largearea substrate has a SERS detection limit of 10^(-8)mol/L for 4-aminothiophenol(4-ATP), indicating the potential realworld applications for trace detection. 展开更多
关键词 laser ablation surface-enhanced Raman scattering(SERS) light trapping effect orthogonal experiment design
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