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Correction of the Phase Distortion for High Power Laser by Freeform Shape Mirror

机译:自由曲面镜对大功率激光相位畸变的校正

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The wavefront can keep stable while the laser system is adjusted well. Based on this characteristic, in order to improve the beam quality, we suggest to make mirror of free-form surface to compensate for the laser wavefront aberration. First, the theory of aberration compensated with free-form shape mirror is introduced, then through computer simulation, the mirror's capability of is discussed, lastly, the mirror is used by laser system which the average output power is 12.5KW. By the using of free-form shape mirror, laser's wavefront, beam quality of farfield and intensity of nearfield are improved obviously: the intensity of nearfield F is improved from 0.15 to 0.39; the wavefront's PV is improved from 6.3μm to 1.7μm; the wavefront's rms is improved from 2.0μm to 0.4μm; the beam quality of farfield β is improved from 5.25 to 1.8. Compared with deformable mirror of adaptive optics, the free-form shape mirror has its own advantage: low cost; with no increase to laser system complication; the free-from shape mirror can be used to compensated for high order wavefront aberration effectively.
机译:调整好激光系统后,波前可以保持稳定。基于此特性,为提高光束质量,建议制作自由曲面的镜面以补偿激光波前像差。首先介绍了自由曲面反射镜补偿像差的原理,然后通过计算机仿真讨论了反射镜的性能,最后,激光系统使用了平均输出功率为12.5KW的反射镜。通过使用自由形状镜,激光器的波阵面,远场光束质量和近场强度得到了明显改善:近场F的强度从0.15提高到0.39;波前的PV从6.3μm提高到1.7μm;波前的均方根值从2.0μm提高到0.4μm;远场β的光束质量从5.25提高到1.8。与自适应光学器件的可变形镜相比,自由形状镜具有自己的优势:成本低;不会增加激光系统的并发症;自由形状镜可用于有效补偿高阶波前像差。

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