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3D Diffractive Focusing THz of In-Plane Surface Plasmon Polarition Waves

3D Diffractive Focusing THz of In-Plane Surface Plasmon Polarition Waves
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摘要 Demonstrated that analog of diffractive and refractive 3D optics in free space can be developed to manipulate surface waves such as surface plasmon polaritons (SPPs). It has been shown that an air-gap control of a floating dielectric block can generate the dynamic phase and amplitude modulation of the SPP transmission coefficient. Unlike conventional bulk optics, the nano-scale surface optics for SPP processing contains several unexpected and interesting features in addition to the physical features described. Dynamic plasmonic information processing on the nano-scale using air-gap control may be an effective mechanism for building a dynamic plasmonic information processing system. Demonstrated that analog of diffractive and refractive 3D optics in free space can be developed to manipulate surface waves such as surface plasmon polaritons (SPPs). It has been shown that an air-gap control of a floating dielectric block can generate the dynamic phase and amplitude modulation of the SPP transmission coefficient. Unlike conventional bulk optics, the nano-scale surface optics for SPP processing contains several unexpected and interesting features in addition to the physical features described. Dynamic plasmonic information processing on the nano-scale using air-gap control may be an effective mechanism for building a dynamic plasmonic information processing system.
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出处 《Journal of Electromagnetic Analysis and Applications》 2010年第2期116-119,共4页 电磁分析与应用期刊(英文)
关键词 DIFFRACTIVE Optical Element Surface PLASMON Polarition WAVES Three Dimension Diffractive Optical Element Surface Plasmon Polarition Waves Three Dimension
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