Cipparrone Gabriella, Ricardez-Vargas Ibis, Pagliusi Pasquale, Provenzano Clementina
LiCryL Laboratory CNR-INFM, Excellence Centre CEMIF.CAL and Physics Department, University of Calabria,Ponte P. Bucci, Cubo 33B, 87036 Rende (CS), Italy.
Opt Express. 2010 Mar 15;18(6):6008-13. doi: 10.1364/OE.18.006008.
We report a study of the capabilities of an optical tweezer based on polarization gradient. We use a light polarization pattern that is able to simultaneously exert forces and torques in opposite directions depending on the particle's position. It allows to perform oscillatory displacements and control the sense of rotation of several particles inside a uniformly illuminated region. Unconventional trapping of spinning particles in circularly polarized fringes has been observed, which suggests the involvement of hydrodynamic forces.
我们报告了一项关于基于偏振梯度的光镊能力的研究。我们使用一种光偏振模式,该模式能够根据粒子的位置在相反方向上同时施加力和扭矩。它允许在均匀照明区域内对多个粒子进行振荡位移并控制其旋转方向。已观察到在圆偏振条纹中对旋转粒子的非常规捕获,这表明涉及流体动力。