In this contribution electromagnetic properties of traditional and modified bow-tie nanoparticles are investigated. The modified bow-tie particles consist of a pair of opposing metallic truncated triangles, embedded i...In this contribution electromagnetic properties of traditional and modified bow-tie nanoparticles are investigated. The modified bow-tie particles consist of a pair of opposing metallic truncated triangles, embedded in a dielectric environment, with a rectangular dielectric hole engraved on the metallic structure. New analytical models for both structures are developed in order to describe the nanoparticles electromagnetic behavior in terms of resonant wavelength position, magnitude and amplitude width for the extinction cross-section. Analytical results are compared to the numerical values and to the experimental ones existing in literature. Good agreement among them is obtained. Then, the structures are analyzed in terms of sensitivity properties. Results reveal that the modified bow-tie structure can be applied for biomedical applications.展开更多
介绍了2008年中国科学院上海天文台佘山25 m VLBI射电天线的归心测量方案、观测及资料处理情况。此次测量在资料解析方法上提出了改进,通过坐标系变换,把三维拟合问题转换为二维平面问题,有效控制了观测噪声的影响,确保了参数解的精度...介绍了2008年中国科学院上海天文台佘山25 m VLBI射电天线的归心测量方案、观测及资料处理情况。此次测量在资料解析方法上提出了改进,通过坐标系变换,把三维拟合问题转换为二维平面问题,有效控制了观测噪声的影响,确保了参数解的精度和稳定性。展开更多
文摘In this contribution electromagnetic properties of traditional and modified bow-tie nanoparticles are investigated. The modified bow-tie particles consist of a pair of opposing metallic truncated triangles, embedded in a dielectric environment, with a rectangular dielectric hole engraved on the metallic structure. New analytical models for both structures are developed in order to describe the nanoparticles electromagnetic behavior in terms of resonant wavelength position, magnitude and amplitude width for the extinction cross-section. Analytical results are compared to the numerical values and to the experimental ones existing in literature. Good agreement among them is obtained. Then, the structures are analyzed in terms of sensitivity properties. Results reveal that the modified bow-tie structure can be applied for biomedical applications.