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The study of the structural stability of the spiral laser beams propagation through inhomogeneous phase medium.

机译:螺旋激光束通过不均匀相介质传播的结构稳定性研究。

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This paper discusses theoretical and experimental results of the investigation of light beams that retain their intensity structure during propagation and focusing. Spiral laser beams are a family of laser beams that preserve the structural stability up to scale and rotation with the propagation. Properties of spiral beams are of practical interest for laser technology, medicine and biotechnology. Researchers use a spiral beams for movement and manipulation of microparticles. Functionality laser manipulators can be significantly enhanced by using spiral beams whose intensity remains invariable. It is well known, that these beams has non-zero orbital angular momentum. Spiral beams have a complicated phase distribution in cross section. In this paper we investigate the structural stability of the laser beams having a spiral phase structure by passing them through an inhomogeneous phase medium. Laser beam is passed through a medium is characterized by a random distribution of phase in the range 0.2π. The modeling was performed using VirtualLab 5.0 (manufacturer LightTrans GmbH). Compared the intensity distribution of the spiral and ordinary laser beam after the passage of the inhomogeneous medium. It is shown that the spiral beams exhibit a significantly better structural stability during the passage phase heterogeneous environments than conventional laser beams. The results obtained in the simulation are tested experimentally. Experimental results show good agreement with the theoretical results.
机译:本文讨论了在传播和聚焦期间保持其强度结构的光束调查的理论和实验结果。螺旋激光束是一个激光束系列,可保持结构稳定性,以缩放和旋转在传播中。螺旋梁的性质对于激光技术,医学和生物技术的实际兴趣。研究人员使用螺旋梁进行微粒的运动和操纵。通过使用强度保持不变的螺旋光束,可以显着提高功能激光操纵器。众所周知,这些光束具有非零轨道角动量。螺旋梁在横截面中具有复杂的相位分布。在本文中,我们研究了通过使它们通过不均匀相介质而具有螺旋相结构的激光束的结构稳定性。激光束通过介质的特征在于0.2π的相位的随机分布。使用Virtuallab 5.0(制造商LightTrans GmbH)进行建模。比较了螺旋和普通激光束在不均匀介质通过后的强度分布。结果表明,螺旋光束在通道相位异构环境中表现出比传统的激光束在通道相位异构环境中具有明显更好的结构稳定性。在模拟中获得的结果进行了实验测试。实验结果表明,与理论结果吻合良好。

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