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Optical trapping in counter-propagating Bessel beams

机译:反向传播的贝塞尔光束中的光阱

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We present and analyse a method that uses an interference of counter-propagating Bessel beams for 3D confinement of high-index micro-particles in array of optical traps. Due to this interference a sort of standing wave (SW) is created with intensity maxima separated by more than half a wavelength of the trapping beam and arranged along propagation axis. Thanks to the non-diffracting nature of this beam the region of SW existence is much longer comparing to the Gaussian beam of the similar beam diameter. Steep axial optical intensity gradients cause axial optical force that enables 3D particle confinement. Moreover, the self-healing property of Bessel beam suppresses the beam modification due to the presence of confined objects.
机译:我们提出并分析了一种方法,该方法使用反向传播的贝塞尔光束的干涉对光阱阵列中的高折射率微粒进行3D约束。由于这种干扰,产生了一种驻波(SW),其强度最大值被捕获光束的波长的一半以上隔开,并沿传播轴排列。由于该光束的非衍射特性,与相似光束直径的高斯光束相比,SW的存在区域要长得多。陡峭的轴向光学强度梯度会引起轴向光学力,从而实现3D粒子约束。此外,贝塞尔光束的自愈特性抑制了由于存在受限物体而引起的光束变形。

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