Bowman Richard, Gibson Graham, Padgett Miles
Department of Physics and Astronomy, SUPA, University of Glasgow, G12 8QQ, UK.
Opt Express. 2010 May 24;18(11):11785-90. doi: 10.1364/OE.18.011785.
We present an optical system capable of generating stereoscopic images to track trapped particles in three dimensions. Two-dimensional particle tracking on each image yields three dimensional position information. Our approach allows the use of a high numerical aperture (NA=1.3) objective and large separation angle, such that particles can be tracked axially with resolution of 3 nm at 340 Hz. Spatial Light Modulators (SLMs), the diffractive elements used to steer and split laser beams in Holographic Optical Tweezers, are also capable of more general operations. We use one here to vary the ratio of lateral to axial trap stiffness by changing the shape of the beam at the back aperture of the microscope objective. Beams which concentrate their optical power at the extremes of the back aperture give rise to much more efficient axial trapping. The flexibility of using an SLM allows us to create multiple traps with different shapes.
我们展示了一种能够生成立体图像以在三维空间中跟踪捕获粒子的光学系统。在每个图像上进行二维粒子跟踪可产生三维位置信息。我们的方法允许使用高数值孔径(NA = 1.3)物镜和大分离角,从而能够以340 Hz的频率在轴向上以3 nm的分辨率跟踪粒子。空间光调制器(SLM)是用于在全息光镊中控制和分离激光束的衍射元件,它也能够执行更一般的操作。我们在此使用一个空间光调制器,通过改变显微镜物镜后孔径处光束的形状来改变横向与轴向阱刚度的比率。将光功率集中在物镜后孔径边缘的光束会产生效率更高的轴向捕获。使用空间光调制器的灵活性使我们能够创建具有不同形状的多个阱。