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Laser transfer technique using wavefront correction and beam homogenizers in Thomson scattering diagnostics

机译:在Thomson散射诊断中使用波前校正和光束均化器的激光传输技术

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This paper suggests the use of two optical elements for laser transfer in Thomson scattering diagnostics, which are widely used for other laser applications. YAG lasers amplified by flash lamps (repetition frequency of 50-100 Hz having a few Joules output) can sometimes have adverse effects such as peaked beam profiles and wavefront distortion. We used a beam homogenizer, which is a refractive optical element, to change the beam profile from peaked to non-peaked at a designated position. Using a super-Gaussian output profile when amplifying lasers facilitated longer-by a factor of 1.5 ( = 300 mm/200 mm) compared with top-hat beam profile-sustained distances, i.e. the distance along the laser path having a non-peaked profile. In terms of beam quality, wavefront distortion broke the beam profile in the far field. We used a deformable mirror to correct and flatten the wavefront of the beam. A YAG laser having a wavefront distortion of 0.46 lambda, peak-to-valley was used to test the application of the deformable mirror, the results of which improved wavefront distortion to a wavelength of 0.1 lambda, peak-to-valley.
机译:本文建议在Thomson散射诊断程序中使用两个光学元件进行激光传输,这些光学元件已广泛用于其他激光应用中。由闪光灯放大的YAG激光(重复频率为50-100 Hz,具有几焦耳输出)有时会产生不利影响,例如峰值光束轮廓和波前畸变。我们使用了光束均化器(它是折射光学元件)来将光束轮廓在指定位置从峰值更改为非峰值。与顶帽光束轮廓所保持的距离(即沿激光路径的距离具有非峰值轮廓)相比,在放大激光时使用超高斯输出轮廓可以使长度延长1.5倍(= 300 mm / 200 mm) 。就光束质量而言,波前畸变破坏了远场中的光束轮廓。我们使用了可变形镜来校正和展平光束的波阵面。使用波峰畸变为峰谷的0.46λYAG的激光来测试可变形反射镜的应用,其结果将波前畸变改善到峰谷的0.1λ的波长。

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