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光学镊子中椭球形纳米棒的光学对准与限制:一项理论研究。

Optical alignment and confinement of an ellipsoidal nanorod in optical tweezers: a theoretical study.

作者信息

Trojek Jan, Chvátal Lukáš, Zemánek Pavel

机构信息

Institute of Scientific Instruments of the ASCR, v.v.i., Academy of Sciences of the Czech Republic, Brno, Czech Republic.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2012 Jul 1;29(7):1224-36. doi: 10.1364/JOSAA.29.001224.

Abstract

Within the Rayleigh approximation, we investigate the behavior of an individual ellipsoidal metal nanorod that is optically confined in three dimensions using a single focused laser beam. We focus on the description of the optical torque and optical force acting upon the nanorod placed into a linearly polarized Gaussian beam (scalar description of the electric field) or a strongly focused beam (vector field description). The study comprises the influence of the trapping laser wavelength, the angular aperture of focusing optics, the orientation of the ellipsoidal nanorod, and the aspect ratio of its principal axes. The results reveal a significantly different behavior of the nanorod if the trapping wavelength is longer or shorter than the wavelength corresponding to the longitudinal plasmon resonance mode. Published experimental observations are compared with our theoretical predictions with satisfactory results.

摘要

在瑞利近似范围内,我们研究了使用单束聚焦激光束在三维空间中光学限制的单个椭球形金属纳米棒的行为。我们专注于描述作用于置于线偏振高斯光束(电场的标量描述)或强聚焦光束(矢量场描述)中的纳米棒上的光扭矩和光力。该研究包括捕获激光波长、聚焦光学器件的角孔径、椭球形纳米棒的取向及其主轴的纵横比的影响。结果表明,如果捕获波长比对应于纵向等离子体共振模式的波长更长或更短,纳米棒的行为会有显著不同。将已发表的实验观察结果与我们的理论预测进行比较,结果令人满意。

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