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首页> 外文期刊>Applied Surface Science >Coaxial hole array fabricated by ultrafast femtosecond-laser processing with spatially multiplexed vortex beams for surface enhanced infrared absorption
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Coaxial hole array fabricated by ultrafast femtosecond-laser processing with spatially multiplexed vortex beams for surface enhanced infrared absorption

机译:同轴孔阵列通过超快飞行 - 激光加工制造,具有用于表面增强的红外吸收的空间多路复用涡流束

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摘要

Here, we combined shaping and multiplexing of the laser beam to achieve ultrafast femtosecond-laser patterning of Au films with coaxial and circular hole arrays at a printing rate of 10(6) elements per second. Fabrication quality of the developed parallel laser-printing approach was found to be enough to replicate coaxial hole arrays with a resonant transmission over 90% in the mid-IR spectral range resulted from coupling between localized electromagnetic mode supported by coaxial unit cell and the lattice-type SPPs. Coupling of the surface plasmons localized within the coaxial holes to the vibration modes of the deposited analyte, widely used antihistamine drag Diphendramine, was found to provide around 800-fold enhancement of the amplitude of characteristic IR bands allowing reliable SEIRA-based fingerprint identification at trace concentrations. Our findings are consistent with the calculated amplitude of the electromagnetic hot spots suggesting their predominant contribution to the observed SEIRA effect. The ability to tune in a facile way the hole geometry and arrangement in the process of fabrication allows to tailor the spectral position of the resonance spanning practically relevant spectral range from 4 to 10 mu m. This makes the coaxial micmhole arrays produced with ultrafast direct laser printing promising for IR filtering and sensing.
机译:这里,我们组合激光束的成型和复用,以通过同轴和圆形孔阵列以10(6)元元元的同轴和圆形孔阵列实现超快的飞秒激光图案化。发现所开发的平行激光印刷方法的制造质量足以复制同轴孔阵列,其在中红外频谱范围内以超过90%的共振传递产生的谐振透射阵列导致由同轴单元电池和晶格支撑的局部电磁模式之间的耦合。类型SPPS。发现在沉积分析物的振动模式内局部偏离的表面等离子体,广泛使用的抗组胺药阻力二合一瘤的振动模式,提供约800倍的增强特性IR带的增强,允许在迹线上获得可靠的基于Seira的指纹识别浓度。我们的研究结果与计算出对观察到的Seira效应的主要贡献的计算幅度一致。在制造过程中孔的孔几何形状和布置的能力允许定制跨越4至10μm的谐振的谱位的光谱位置。这使得具有超快直接激光打印产生的同轴纤维孔阵列,这是IR过滤和感测的。

著录项

  • 来源
    《Applied Surface Science》 |2021年第1期|148602.1-148602.7|共7页
  • 作者单位

    Far Eastern Fed Univ Vladivostok Russia|Russian Acad Sci Inst Automat & Control Proc Far Eastern Branch Vladivostok 690041 Russia;

    Samara Natl Res Univ Moskovskoe Shosse 34 Samara 443086 Russia|RAS FSRC Crystallog & Photon RAS Branch Image Proc Syst Inst 151 Molodogvardeyskaya St Samara 443001 Russia;

    Samara Natl Res Univ Moskovskoe Shosse 34 Samara 443086 Russia|RAS FSRC Crystallog & Photon RAS Branch Image Proc Syst Inst 151 Molodogvardeyskaya St Samara 443001 Russia;

    Harbin Inst Technol Sch Chem & Chem Engn MIIT Key Lab Crit Mat Technol New Energy Convers Harbin 150001 Peoples R China;

    Russian Acad Sci Lebedev Phys Inst Moscow 119991 Russia;

    Far Eastern Fed Univ Vladivostok Russia|Russian Acad Sci Inst Automat & Control Proc Far Eastern Branch Vladivostok 690041 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Laser processing; Donut-shaped beams; Spatial beam multiplexing; Hole arrays; Coaxial apertures; FTIR spectroscopy; SEIRA;

    机译:激光加工;甜甜圈形梁;空间梁复用;孔阵列;同轴孔;FTIR光谱;SEIRA;

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