Imura Kohei, Nagahara Tetsuhiko, Okamoto Hiromi
Institute for Molecular Science, Myodaiji, Okazaki, Aichi 444-8585, Japan.
J Chem Phys. 2005 Apr 15;122(15):154701. doi: 10.1063/1.1873692.
We have investigated optical properties of single gold nanorods by using an apertured-type scanning near-field optical microscope. Near-field transmission spectrum of single gold nanorod shows several longitudinal surface plasmon resonances. Transmission images observed at these resonance wavelengths show oscillating pattern along the long axis of the nanorod. The number of oscillation increases with decrement of observing wavelength. These spatial characteristics were well reproduced by calculated local density-of-states maps and were attributed to spatial characteristics of plasmon modes inside the nanorods. Dispersion relation for plasmons in gold nanorods was obtained by plotting the resonance frequencies of the plasmon modes versus the wave vectors obtained from the transmission images.
我们通过使用孔径型扫描近场光学显微镜研究了单个金纳米棒的光学性质。单个金纳米棒的近场透射光谱显示出几个纵向表面等离子体共振。在这些共振波长处观察到的透射图像显示出沿纳米棒长轴的振荡图案。振荡次数随着观察波长的减小而增加。这些空间特征通过计算得到的局域态密度图得到了很好的再现,并归因于纳米棒内部等离子体模式的空间特征。通过绘制等离子体模式的共振频率与从透射图像获得的波矢的关系,得到了金纳米棒中等离子体的色散关系。