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首页> 外文期刊>Plasmonics >Field distribution and quality factor of surface plasmon resonances of metal meshes for mid-infrared sensing
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Field distribution and quality factor of surface plasmon resonances of metal meshes for mid-infrared sensing

机译:中红外传感金属网表面等离子体共振的场分布和品质因数

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摘要

We studied surface plasmon sensors based on micrometric metal meshes by optical transmission spectroscopy as a function of the angle of incidence. The mesh period was set to 2 μm for operation at mid-infrared wavelengths. Metal meshes on dielectric substrates were compared to suspended meshes obtained with a lift-off-free fabrication process, which reduces plasmon damping and increases the quality factor up to 25. We have numerically calculated the electric field distribution of "dark" quadrupole-like modes and found that the suspended mesh provides an enhanced interaction volume extending up to hundreds of nanometers in free space. Our sensors have been experimentally tested and they exhibited a sensitivity up to 1.4·10~(-3)nm~(-1), at least 1 order of magnitude better than standard mid-infrared absorption spectroscopy.
机译:我们通过光学透射光谱法研究了基于微米金属网的表面等离子体激元传感器与入射角的关系。网格周期设置为2μm,以便在中红外波长下运行。将介电基板上的金属网格与通过无剥离制造工艺获得的悬浮网格进行了比较,该过程可降低等离激元阻尼并提高质量因数达25。我们已通过数值计算了“暗”四极杆模式的电场分布并发现,悬浮的网状结构提供了增强的相互作用体积,该相互作用体积在自由空间中延伸至数百纳米。我们的传感器已经过实验测试,其灵敏度高达1.4·10〜(-3)nm〜(-1),比标准中红外吸收光谱法至少高出1个数量级。

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