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Does orbital angular momentum have effect on laser’s scattering by molecular atmosphere?

机译:轨道角动量对分子大气对激光的散射有影响吗?

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摘要

Lasers with orbital angular momentum (OAM) have potential applications in communication technology, manipulation of particles, and remote sensing. Because of its unusual light-scattering properties, the OAM laser’s interaction with a molecular atmosphere must be studied to ensure that it is not lossy for communication or remote-sensing applications that involve its transmission through an atmospheric environment. In this study, the finite-difference time-domain (FDTD) method [] is applied to calculate the light scattering of the purely azimuthal (the radial mode number is assumed to be zero) Laguerre-Gaussian (LG) beams with OAM by very small dielectric particles. Not like Lorentz-Mie solutions, the FDTD method can calculate for particles off the central axis of the LG beam. It is found that when the particles are very small, and the topological charge number of the OAM of a laser is not extremely large, the laser’s OAM has little effect on the scattering phase function. This suggests that Rayleigh theory can be applied directly to calculate the light scattering by atmospheric molecules. The transmission of a laser beam with OAM in a molecular atmosphere is not different from that of a regular Gaussian beam.
机译:具有轨道角动量(OAM)的激光器在通信技术,粒子操纵和遥感中具有潜在的应用。由于OAM激光具有异常的光散射特性,因此必须对其进行研究,以确保OAM激光在涉及其在大气环境中传输的通信或遥感应用中不会造成损失。在这项研究中,使用时域有限差分(FDTD)方法[]计算具有OAM的纯方位角(假定径向模式数为零)拉格尔-高斯(LG)光束的光散射非常小。小介电粒子。与Lorentz-Mie解决方案不同,FDTD方法可以计算LG光束中心轴外的粒子。结果发现,当粒子非常小且激光的OAM的拓扑电荷数不是非常大时,激光的OAM对散射相位功能的影响很小。这表明瑞利理论可以直接应用于计算大气分子的光散射。 OAM激光束在分子气氛中的透射率与常规高斯光束的透射率没有什么不同。

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