Author Affiliations
Abstract
1 Beijing Engineering Research Center of Mixed Reality and Advanced Display, School of Optics and Photonics, Beijing Institute of Tech-nology, Beijing, 100081, China
2 Beijing Key Laboratory of Advanced Optical Remote Sensing Technology, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China
Current freeform illumination optical designs are mostly focused on producing prescribed irradiance distributions on planar targets. Here, we aim to design freeform optics that could generate a desired illumination on a curved target from a point source, which is still a challenge. We reduce the difficulties that arise from the curved target by involving its varying z-coordinates in the iterative wavefront tailoring (IWT) procedure. The new IWT-based method is developed under the stereographic coordinate system with a special mesh transformation of the source domain, which is suitable for light sources with light emissions in semi space such as LED sources. The first example demonstrates that a rectangular flat-top illumination can be generated on an undulating surface by a spherical-freeform lens for a Lambertian source. The second example shows that our method is also applicable for producing a non-uniform irradiance distribution in a circular region of the undulating surface.
freeform optics prescribed irradiance distribution curved target iterative wavefront tailoring 
Opto-Electronic Advances
2020, 3(7): 07200010
作者单位
摘要
1 中国矿业大学(北京)机电学院,北京 100083
2 北京人民警察学院公安科技教研部,北京 102202
3 中国工程物理研究院激光聚变中心,四川 绵阳 621900
为了探索低泵浦能量下得到X射线激光(XRL)并提高其输出强度的方法,对弯曲靶技术和双预脉冲技术进行了理论分析和数值模拟,模拟结果表明第二预脉冲与第一预脉冲间隔2ns,主脉冲与第二预脉冲间隔5ns时效果等离子体增益的时空特性曲线最好。随后在“星光Ⅱ”激光装置上进行了双预脉冲驱动类氖铬(J=0-1,3p-3s跃迁)XRL实验,得到了28.5nm的单线X射线激光,结果表明在脉冲结构和泵浦总能量不变情况下XRL输出强度主要与第二预脉冲强度有关,实验结果很好地符合了数值模拟结果。
激光技术 X射线激光 双预脉冲 弯曲靶 类氖铬 laser techniques X-ray laser double prepulses curved target Ne-like Cr 
量子电子学报
2006, 23(4): 0476
作者单位
摘要
1 高功率激光物理国家实验室,中国科学院上海光机所, 上海 201800
2 北京应用物理与计算数学研究所
3 日本大阪大学激光工程研究所
4 日本大阪工业技术研究所
采用双弯曲靶对接技术和多脉冲驱动,结合新型线聚焦系统,在大阪大学激光工程研究所的GekkoXII装置上进行了类镍钕软X射线激光实验,以相对较低的驱动能量,获得了高强度的7.9 nm软X射线激光输出。
类镍钕软X射线激光 双弯曲靶对接 柱面镜阵列 
中国激光
1999, 26(4): 299

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