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Arbitrary multi-beam laser scanning and trapping by use of a spatial light modulator and manual scripting interface

机译:使用空间光调制器和手动脚本界面进行任意多光束激光扫描和陷印

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A multi-beam, variable footprint, laser beam steering and shaping system is described and used with a microscope to demonstrate multi-particle laser trapping. It is built around a computer-interfaced 512 x 512 pixel analog phase-only spatial light modulator (SLM) and a 1 W, 1064 nm wavelength laser. Hand sketches on paper made with a digital pen are used to prescribe the footprints, velocities and trajectories of multiple, independently-controlled diffracted spots. Continuous scanning is approximated by automatically designing a sequence of phase-patterns that are run through and diffracted by the SLM. Very complex scanning sequences of dozens of independently controlled spots can be quickly designed and run. The number of beams that we can trap with is necessarily limited due to the low throughput (~23 mW) of the IR light through the microscope optics. Among the trapping experiments done with the system a triangular shaped vortex ring tends to stop single particles at the apexes of the triangle. However, collision with a second particle pushes the first particle past the apex and sets it into motion, leaving the second particle stopped until collision with a third particle. The discrete motion conditioned on collisions is suggestive of a queuing process or a Markov chain.
机译:描述了一种多光束,可变足迹,激光束控制和整形系统,并将其与显微镜一起使用以演示多粒子激光陷获。它是基于计算机接口的512 x 512像素模拟纯相位空间光调制器(SLM)和1 W,1064 nm波长的激光器构建的。用数字笔在纸上绘制的手绘草图可用于规定多个独立控制的衍射点的足迹,速度和轨迹。通过自动设计一系列贯穿SLM并由SLM衍射的相位图案,可以近似地进行连续扫描。可以快速设计和运行数十个独立控制的斑点的非常复杂的扫描序列。由于红外光通过显微镜光学器件的通量低(约23 mW),因此我们可以捕获的光束数量必然受到限制。在使用该系统进行的捕集实验中,三角形涡流环倾向于使单个颗粒停止在三角形的顶点。但是,与第二个粒子的碰撞会将第一个粒子推过顶点并使其运动,从而使第二个粒子停止运动,直到与第三个粒子碰撞为止。以碰撞为条件的离散运动暗示了排队过程或马尔可夫链。

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