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用于高功率片状激光器的可调片状像差补偿器。

Adjustable slab-aberration compensator for high power slab laser.

作者信息

Shao Chongfeng, Guo Yading, Chen Zhongzheng, Bo Yong, Li Yang, Zhang Lin, Yuan Lei, Xu Yuanzhai, Meng Shuai, Peng Qinjun, Xu Zuyan

出版信息

Opt Express. 2020 Mar 16;28(6):8056-8063. doi: 10.1364/OE.385137.

Abstract

An adjustable slab-aberration compensator (ASAC) with the ability to compensate the large magnitude inherent wavefront aberrations in the slab width direction is proposed and experimentally demonstrated. The ASAC has a size of 130mm×45mm (effective aperture of 75mm×28mm) and 11 actuators along the length with a contact spacing of 8 mm. The design is optimized by simulations in terms of the mirror's coupling coefficient with the contact areas, mechanical properties of the driving units, and the mirror thickness. The initial surface figure of the ASAC has PV and RMS values of 55 nm and 10 nm, and the dynamic range is 30 µm. In our experiments, a 20 kW Nd: YAG quasi-continuous wave (QCW) slab laser is further compensated by the ASAC system. The beam quality increases from 15× to 3.5× diffraction limit at 20 kW output after correction. Besides, the proposed ASAC can maintain the surface shape after power shutdown and have good thermal stability. The temperature rise of the ASAC is less than 7 C in the 20 kW laser correction experiment.

摘要

提出并通过实验证明了一种可调节平板像差补偿器(ASAC),它能够补偿平板宽度方向上固有的大幅度波前像差。该ASAC尺寸为130mm×45mm(有效孔径为75mm×28mm),沿长度方向有11个致动器,接触间距为8mm。通过模拟对设计进行了优化,涉及镜子与接触区域的耦合系数、驱动单元的机械性能以及镜子厚度。ASAC的初始表面形状的PV值和RMS值分别为55nm和10nm,动态范围为30µm。在我们的实验中,一个20kW的Nd:YAG准连续波(QCW)平板激光器通过ASAC系统进一步得到补偿。校正后,在20kW输出时,光束质量从15倍衍射极限提高到3.5倍衍射极限。此外,所提出的ASAC在断电后能够保持表面形状,并且具有良好的热稳定性。在20kW激光校正实验中,ASAC的温度上升小于7℃。

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