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Improved optical enhancement using double-width plasmonic gratings with nanogaps 被引量:2

Improved optical enhancement using double-width plasmonic gratings with nanogaps
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摘要 Plasmonic grating structures have been shown effective at increasing near-field optical enhancement. A doublewidth plasmonic grating design is introduced, where each period has two alternating metal widths separated by a nanogap. With this new design, analysis has shown that plasmonic resonances couple between each metal section,resulting in even greater optical enhancement compared with single-width gratings. The geometry that gives the greatest optical enhancement has been determined with a computational model. This work demonstrates that the increased enhancement is due to hybridized modes that couple between the two grating segments. Plasmonic grating structures have been shown effective at increasing near-field optical enhancement. A doublewidth plasmonic grating design is introduced, where each period has two alternating metal widths separated by a nanogap. With this new design, analysis has shown that plasmonic resonances couple between each metal section,resulting in even greater optical enhancement compared with single-width gratings. The geometry that gives the greatest optical enhancement has been determined with a computational model. This work demonstrates that the increased enhancement is due to hybridized modes that couple between the two grating segments.
出处 《Photonics Research》 SCIE EI 2016年第5期173-180,共8页 光子学研究(英文版)
基金 Arkansas Biosciences Institute(ABI) Iraqi Ministry of Higher Education and Scientific Research SPIE
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