论文标题
使用全息光学镊子,用通风梁阵列对微粒的实验光学诱捕
Experimental optical trapping of microparticles with an Airy beams array using a Holographic Optical Tweezer
论文作者
论文摘要
在这项工作中,我们使用全息光学镊子呈现微粒的实验光学陷阱。由于其非裂纹和自动焦点特性,通风梁阵列对于颗粒的光学操纵具有吸引力。通风梁阵列由n个通风梁组成,该光束沿相反方向相互加速,对于不同的弹道轨迹,即具有不同的初始发射角。基于此,我们开发了一种用于生成非裂开光束的全息光学镊子系统,因此,我们研究了作用在通风梁阵列微粒上的光学力的分布。结果表明,可以通过通风梁的发射角参数来控制微粒上阵列的梯度和散射力。此外,使用通风梁阵列可以获得更大的光学陷阱稳定性,并以可控制的方式捕获和指导微粒的可能性有趣,可以在光学,生物学和大气科学中应用。
In this work, we present the experimental optical trap of microparticles with an Airy beams array using a holographic optical tweezers. The Airy beams array are attractive for optical manipulation of particles owing to their non--diffracting and autofocusing properties. An Airy beams array is composed of N Airy beams which accelerate mutually and symmetrically in opposite direction, for different ballistic trajectories, that is, with different initial launch angles. Based on this, we developed a holographic optical tweezers system for the generation of non-diffracting beams and with it, we investigate the distribution of optical forces acting on microparticles of an Airy beams array. The results show that the gradient and scattering force of array on microparticles can be controlled through a launch angle parameter of Airy beams. In addition, it's possible to obtain greater stability for optical trap using an Airy beams array, with interesting possibilities for trapping and guiding of microparticles in a controllable way that can be applied in optical, biological and atmospheric sciences.