Demming A L, Festy F, Richards D
Department of Physics, King's College London, Strand, London WC2R 2LS, United Kingdom.
J Chem Phys. 2005 May 8;122(18):184716. doi: 10.1063/1.1896356.
Calculations of the electric-field enhancements in the vicinity of an illuminated silver tip, modeled using a Drude dielectric response, have been performed using the finite difference time domain method. Tip-induced field enhancements, of application in "apertureless" Raman scanning near-field optical microscopy (SNOM), result from the resonant excitation of plasmons on the metal tip. The sharpness of the plasmon resonance spectrum and the highly localized nature of these modes impose conditions to better exploit tip plasmons in tip-enhanced apertureless SNOM. The effect of tip-to-substrate separation and polarization on the resolution and enhancement are analyzed, with emphasis on the different field components parallel and perpendicular to the substrate.
利用有限差分时域方法,对使用德鲁德介电响应模型的照明银尖端附近的电场增强进行了计算。尖端诱导的场增强应用于“无孔径”拉曼扫描近场光学显微镜(SNOM),它源于金属尖端上等离子体激元的共振激发。等离子体激元共振光谱的尖锐度以及这些模式的高度局域化特性,为在尖端增强无孔径SNOM中更好地利用尖端等离子体激元施加了条件。分析了尖端与基底间距和偏振对分辨率和增强的影响,重点关注平行和垂直于基底的不同场分量。