Preece Daryl, Bowman Richard, Linnenberger Anna, Gibson Graham, Serati Steven, Padgett Miles
Department of Physics and Astronomy, SUPA, University of Glasgow, G12 8QQ, UK.
Opt Express. 2009 Dec 7;17(25):22718-25. doi: 10.1364/OE.17.022718.
We present a holographic optical tweezers system capable of position clamping multiple particles. Moving an optical trap in response to the trapped object's motion is a powerful technique for optical control and force measurement. We have now realised this experimentally using a Boulder Nonlinear Systems Spatial Light Modulator (SLM) with a refresh rate of 203Hz. We obtain a reduction of 44% in the variance of the bead's position, corresponding to an increase in effective trap stiffness of 77%. This reduction relies on the generation of holograms at high speed. We present software capable of calculating holograms in under 1ms using a graphics processor unit.
我们展示了一种能够对多个粒子进行位置钳制的全息光镊系统。响应被捕获物体的运动来移动光阱是一种用于光学控制和力测量的强大技术。我们现在已经通过使用刷新率为203Hz的博尔德非线性系统空间光调制器(SLM)在实验中实现了这一点。我们将珠子位置的方差降低了44%,这相当于有效阱刚度提高了77%。这种降低依赖于高速生成全息图。我们展示了一种能够使用图形处理器单元在1毫秒内计算全息图的软件。