Liaw Jiunn-Woei, Lo Wei-Jiun, Kuo Mao-Kuen
Opt Express. 2014 May 5;22(9):10858-67. doi: 10.1364/OE.22.010858.
This study theoretically investigates the wavelength-dependent longitudinal polarizability of a gold nanorod (GNR) irradiated by a polarized laser beam. The resultant optical torque in terms of the Maxwell stress tensor was analyzed quantitatively using the multiple multipole method. Our results indicate that the real part of the longitudinal polarizability of GNR can be either positive or negative, leading to the parallel or perpendicular modes, respectively. For the parallel and perpendicular modes, the long axis of GNR is rotated to align parallel and perpendicular, respectively, to the polarization direction of the illuminating light. The turning point between these two modes, depending on the aspect ratio (AR) and the size of GNR, nearly coincides with the longitudinal surface plasmon resonance (LSPR). The perpendicular mode ranges from the transverse SPR to LSPR, and the range of the parallel mode is broadband from LSPR to the near infrared regime. Owing to that a larger optical torque and less plasmonic heating are of concern, an efficiency of optical torque is defined to evaluate the performance of different wavelengths. Analysis results indicate that lasers with wavelength in the perpendicular mode are applicable to rotate and align a GNR of a higher AR. For example, the laser of 785 nm (the perpendicular mode) is superior to that of 1064 nm (the parallel mode, off-resonant from LSPR of 955 nm) for rotating a GNR of AR = 4 and radius 20 nm with an orientation of 45° with respect to the laser polarization.
本研究从理论上研究了偏振激光束照射下金纳米棒(GNR)的波长依赖性纵向极化率。利用多重多极子方法,根据麦克斯韦应力张量对产生的光扭矩进行了定量分析。我们的结果表明,GNR纵向极化率的实部可以为正或为负,分别导致平行模式或垂直模式。对于平行模式和垂直模式,GNR的长轴分别旋转至与照明光的偏振方向平行和垂直。这两种模式之间的转折点取决于GNR的纵横比(AR)和尺寸,几乎与纵向表面等离子体共振(LSPR)重合。垂直模式的范围从横向表面等离子体共振(SPR)到LSPR,平行模式的范围是从LSPR到近红外波段的宽带。由于更大的光扭矩和更少的等离子体加热是人们所关注的,因此定义了光扭矩效率来评估不同波长的性能。分析结果表明,垂直模式下波长的激光适用于旋转和排列更高纵横比的GNR。例如,对于纵横比为4、半径为20 nm且相对于激光偏振方向为45°取向的GNR,785 nm(垂直模式)的激光在旋转方面优于1064 nm(平行模式,与955 nm的LSPR非共振)的激光。