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Optimizing optical trap stiffness for Rayleigh particles with an Airy array beam

机译:用通风阵列梁优化瑞利颗粒的光阱刚度

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Airy array beams are attractive for optical manipulation of particles owing to their non-diffraction and auto-focusing properties. An Airy array beam is composed of N Airy beams that accelerate mutually and symmetrically in opposite directions, for different ballistics trajectories, i.e., with different initial launch angles. Based on this, we investigate the optical force distribution acting on Rayleigh particles. Results show that it is possible to obtain greater stability for optical trapping by increasing the number of beams in the array. Also, the intensity focal point and gradient and scattering force of the array on Rayleigh particles can be controlled through a launch angle parameter. (C) 2020 Optical Society of America
机译:由于它们的非衍射和自动聚焦性能,通风阵列梁对于颗粒的光学操纵是具有吸引力的。 通气阵列梁由N通束构成,该梁在相反方向上相互且对称地加速,用于不同的弹道轨迹,即,具有不同的初始发射角度。 基于此,我们研究了作用在瑞利颗粒上的光力分布。 结果表明,通过增加阵列中的光束的数量,可以获得更大的光学捕集稳定性。 而且,可以通过发射角参数来控制瑞利颗粒上的阵列的强度焦点和散射力。 (c)2020美国光学学会

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