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Visible transmission response of nanoscale complementary metamaterials for sensing applications

机译:用于传感应用的纳米级互补超材料的可见传输响应

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摘要

Metamaterials (MMs) have shown huge potential in sensing applications by detecting their optical properties, which can be designed to operate at frequencies from visible to mid-IR. Here we constructed complementary split ring resonator (CSRR) based metamaterials in nanoscale with unit length of 100nm and slit width of 30nm, and observed obvious responses in the visible waveband from 600 to 900nm. These visible responses show a good tunability with the structures geometry, and are well suited for dielectric detection. We demonstrated good refractive index sensing of CSRR based metamaterials in the visible region under both 0°and 90°polarized incidence. Our results extend the study of CSRR based metamaterials to the visible region, which is expected to deepen the understanding of the response mechanism of CSRRs and benefit their sensing applications in the visible region.
机译:超材料(MM)通过检测其光学特性在传感应用中显示出巨大的潜力,可以将其设计为在可见光到中红外的频率下工作。在这里,我们构造了基于互补开口环谐振器(CSRR)的纳米材料,其单位长度为100nm,缝隙宽度为30nm,并且在600至900nm的可见波段观察到明显的响应。这些可见响应显示出与结构几何形状的良好可调性,非常适合于介电检测。我们展示了在0°和90°偏振入射下在可见光区域中CSRR基超材料的良好折射率感测。我们的结果将基于CSRR的超材料的研究扩展到了可见区域,这有望加深对CSRR响应机制的理解,并有益于其在可见区域的传感应用。

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