Ganic Djenan, Gan Xiaosong, Gu Min
Opt Express. 2004 Nov 1;12(22):5533-8. doi: 10.1364/opex.12.005533.
A physical model is presented to understand and calculate trapping force exerted on a dielectric micro-particle under focused evanescent wave illumination. This model is based on our recent vectorial diffraction model by a high numerical aperture objective operating under the total internal condition. As a result, trapping force in a focused evanescent spot generated by both plane wave (TEM00) and doughnut beam (TEM*01) illumination is calculated, showing an agreement with the measured results. It is also revealed by this model that unlike optical trapping in the far-field region, optical axial trapping force in an evanescent focal spot increases linearly with the size of a trapped particle. This prediction shows that it is possible to overcome the force of gravity to lift a polystyrene particle of up to 800 nm in radius with a laser beam of power 10 microW.
提出了一个物理模型,用于理解和计算在聚焦消逝波照射下施加在介电微粒上的捕获力。该模型基于我们最近的矢量衍射模型,该模型由在全内条件下工作的高数值孔径物镜得出。结果,计算了由平面波(TEM00)和环形光束(TEM*01)照射产生的聚焦消逝光斑中的捕获力,与测量结果一致。该模型还表明,与远场区域的光学捕获不同,消逝焦点中的光轴捕获力随捕获粒子的尺寸线性增加。这一预测表明,用功率为10微瓦的激光束有可能克服重力来提升半径达800纳米的聚苯乙烯粒子。