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Optical binding in non-diffracting beams

机译:非衍射光束的光学结合

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Optical binding forces are present always when two and more colloidal particles are confined by external optical forces in a limited volume. They are caused by rescattering of the original incident field and they manifest themselves by a specific stationary displacements between confined micro-objects. Under certain circumstances the objects can self-organize into spatial arrangements creating so called optically bound matter. Detailed understanding of these forces might enable one to control this behavior. In this paper we present a theoretical study of the object self-organization in the field of two counter-propagating spatially incoherent non-diffracting beams. The field is uniform along the axis of propagation and so the studied phenomenon does not depend on the axial position of micro-objects. Therefore in this system the binding forces can be simply separated from the external forces of trapping field. We also compare this situation with setup of two counter-propagating Gaussian beams which are routinely used for studies of optical binding effects.
机译:当两个或更多个胶体颗粒被外部光学力限制在有限的体积中时,总是存在光学结合力。它们是由原始入射场的散射引起的,并且它们通过受限的微物体之间的特定固定位移而表现出来。在某些情况下,物体可以自组织成空间排列,从而形成所谓的光学结合物质。对这些力的详细了解可能使人们能够控制这种行为。在本文中,我们对两个反向传播的空间非相干非衍射光束领域中的物体自组织进行了理论研究。磁场沿传播轴是均匀的,因此研究的现象不取决于微物体的轴向位置。因此,在该系统中,结合力可以简单地与俘获场的外力分开。我们还将这种情况与通常用于研究光学结合效应的两个反向传播的高斯光束的设置进行了比较。

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