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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Spatially Selective Plasmonic Sensing Using Metallic Nanoslit Arrays
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Spatially Selective Plasmonic Sensing Using Metallic Nanoslit Arrays

机译:使用金属纳米缝阵列的空间选择性等离子传感。

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摘要

Label-free biosensing based on extraordinary optical transmission (EOT) through metallic nanoaperture arrays is a highly promising application of nanoplasmonics. The optical properties of these nanostructures, however, are complex due to the coupling between propagating and localized plasmon resonances, and some important features of the sensing mechanism have not been fully exploited. In this paper, in contrast to most previous studies that focused on the optimization of sensor response to bulk refractive index changes, we investigate the sensor response upon biomolecule bindings at different sensor positions inside or outside the nanoapertures. By properly tuning the geometric parameters of a gold nanoslit array, we show that the enhanced optical field in this EOT-based sensor can be spatially tailored to increase its interaction volume with the binding target biomolecules and improve the sensor performance. The results presented deepen the current understanding of the EOT-based sensor properties and open up new opportunities to further optimize their sensing performance.
机译:基于通过金属纳米孔阵列的非凡光学传输(EOT)的无标记生物传感是纳米等离子体技术的极有希望的应用。然而,由于传播的和局部的等离子体激元共振之间的耦合,这些纳米结构的光学性质是复杂的,并且尚未充分利用传感机制的一些重要特征。在本文中,与以往大多数专注于优化对大折射率变化的传感器响应的研究相反,我们研究了纳米孔内或外在不同传感器位置上生物分子结合后的传感器响应。通过适当地调整金纳米狭缝阵列的几何参数,我们表明,可以在空间上定制此EOT基传感器中增强的光场,以增加其与结合目标生物分子的相互作用量,并改善传感器性能。呈现的结果加深​​了对基于EOT的传感器特性的当前理解,并开辟了进一步优化其传感性能的新机会。

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