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利用相干光束合成系统产生1.5千瓦模式可调谐分数涡旋光束。

Generating the 1.5 kW mode-tunable fractional vortex beam by a coherent beam combining system.

作者信息

Long Jinhu, Jin Kaikai, Chen Qi, Chang Hongxiang, Chang Qi, Ma Yanxing, Wu Jian, Su Rongtao, Ma Pengfei, Zhou Pu

出版信息

Opt Lett. 2023 Oct 1;48(19):5021-5024. doi: 10.1364/OL.502321.

Abstract

As an essential component of the vortex beam, the fractional vortex beam has significantly advanced various applications, such as optical imaging, optical communication, and particle manipulation. However, practical applications face a significant challenge as generating high average power fractional vortex beams remains difficult. Here, we proposed and experimentally demonstrated a high average power mode-tunable fractional vortex beam generator based on an internally sensed coherent beam combining (CBC) system. We presented the first, to the best of our knowledge, successful generation of a 1.5 kW continuous wave fractional vortex beam. Moreover, real-time tuning of the topological charge (TC) from -2/3 to +2/3 was easily achieved using the programmable liquid crystals (LCs). More importantly, the fractional vortex beam copier was presented as well, and the generated fractional vortex beam could be easily transformed into a fractional vortex beam array by changing the fill factor of the laser array. This work can pave the path for the practical implementation of high average power structured light beams.

摘要

作为涡旋光束的重要组成部分,分数涡旋光束在诸如光学成像、光通信和粒子操控等各种应用中取得了显著进展。然而,实际应用面临重大挑战,因为产生高平均功率分数涡旋光束仍然困难。在此,我们提出并通过实验证明了一种基于内部传感相干光束合成(CBC)系统的高平均功率模式可调分数涡旋光束发生器。据我们所知,我们首次成功产生了1.5千瓦连续波分数涡旋光束。此外,使用可编程液晶(LC)可轻松实现拓扑电荷(TC)从-2/3到+2/3的实时调谐。更重要的是,还展示了分数涡旋光束复印机,通过改变激光阵列的填充因子,所产生的分数涡旋光束可轻松转换为分数涡旋光束阵列。这项工作可为高平均功率结构光束的实际应用铺平道路。

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