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Light intensity distribution of high-power laser beams on target plane under different focus system of 2 x 2 beam array
Sun XY(孙晓艳); Lei ZM(雷泽民); Lu XQ(卢兴强); Lv FN(吕风年); Zhang Z(张臻); Fan DY(范滇元); xingqianglu@siom.ac.cn
2016
发表期刊物理学报
卷号65期号:6
摘要Large aperture high-power laser drivers usually focus the high power laser beams in 2 x 2 quads to the target chamber center in order to increase the light intensity on the target plane. The large aperture wedged focus lenses are the core components in the focus system of quadruplets of beams, and it is thought possible to use four two-dimensional off-axis wedged focus lenses as four sub-lenses to make up a larger aperture wedged focus lens in form to focus the four beams. Given that the large aperture two-dimensional off-axis wedged focus lenses are processed and used difficultly, the wedged focus lenses are divided into three categories: the two-dimensional off-axis wedged focus lenses, the one-dimensional off-axis wedged focus lenses, and the non-off-axis wedged focus lenses. On the basis of the three modes of the wedged focus lenses and the corresponding specific incidence angles of each sub-beam, the three focus schemes for the 2 x 2 beam array are put forward to comparatively research the light intensity distribution on the target plane. Research results show that from a perspective of the coherence among the four sub-beams, the phase factors of each sub-beam respectively introducing by the three focus systems with the two-dimensional off-axis, one-dimensional off-axis, and non-off-axis wedged focus lenses are asymmetric, asymmetric and symmetric inside each sub-beam, and symmetric, asymmetric and symmetric among the four sub-beams. Therefore, the wave front consistency of the four sub-beams decreases in the order of the focus systems with the non-off-axis, two-dimensional off-axis, and one-dimensional off-axis wedged focus lenses. The focus schemes with the non-off-axis wedged focus lenses for 2 x 2 beam array can get the narrowest main-lobe, the strongest peak-value intensity, the highest energy concentration ratio on the target plane, followed by the one-dimensional off-axis and two-dimensional off-axis wedged focus lenses. The off-axis mode of the wedged focus lenses not only increases the complexity in the course of processing and using, but also increases the main-lobe size, decreases the peak-value intensity and the energy concentration ratio, which obtains a weaker focusing characteristics than that of the non-off-axis mode of the wedged focus lenses. Research results can provide an important reference for the design of the focus system in the target area of high-power laser drivers.
文章类型Article
其他摘要大口径高功率激光装置为提高激光靶面的光强强度,通常采用2*2集束聚焦的模式进行打靶.大口径楔形透镜是组成2*2集束聚焦系统的核心元件,可分为二维离轴楔形透镜、一维离轴楔形透镜和非离轴楔形透镜3类.为了获得理想靶面光强分布,基于这3类楔形透镜,对比研究相应2*2集束聚焦系统下的靶面光强分布特性.研究结果表明:相比离轴楔形透镜,采用基于非离轴楔形透镜的2*2集束聚焦系统时,容易在激光靶面获得更窄的主瓣宽度、更强的峰值强度、更高的能量集中度.研究结果对高功率激光靶场聚焦系统的配置选择有重要参考价值.
部门归属联合
DOI10.7498/aps.65.064203
资助者National Natural Science Foundation of China [60707019] ; National Natural Science Foundation of China [60707019] ; National Natural Science Foundation of China [60707019] ; National Natural Science Foundation of China [60707019]
收录类别SCI
资助者National Natural Science Foundation of China [60707019] ; National Natural Science Foundation of China [60707019] ; National Natural Science Foundation of China [60707019] ; National Natural Science Foundation of China [60707019]
WOS记录号WOS:000380354000017
引用统计
文献类型期刊论文
条目标识符http://ir.siom.ac.cn/handle/181231/27879
专题高功率激光物理国家实验室
通讯作者xingqianglu@siom.ac.cn
作者单位中国科学院上海光学精密机械研究所
推荐引用方式
GB/T 7714
Sun XY,Lei ZM,Lu XQ,et al. Light intensity distribution of high-power laser beams on target plane under different focus system of 2 x 2 beam array[J]. 物理学报,2016,65(6).
APA 孙晓艳.,雷泽民.,卢兴强.,吕风年.,张臻.,...&xingqianglu@siom.ac.cn.(2016).Light intensity distribution of high-power laser beams on target plane under different focus system of 2 x 2 beam array.物理学报,65(6).
MLA 孙晓艳,et al."Light intensity distribution of high-power laser beams on target plane under different focus system of 2 x 2 beam array".物理学报 65.6(2016).
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