摘要
在超短脉冲激光系统中,像差的存在会使焦斑能量集中度降低。为了克服系统中像差的影响,提高系统最终功率密度,分析了系统中像差的来源,并利用光线追迹方法模拟了系统光路,计算了全系统的像差,提出并设计了双分离透镜作为末级空间滤波器输出透镜进行全系统像差的补偿。实验表明,利用所设计的双分离透镜,可以有效地补偿系统色差和球差,使系统输出焦斑半径从未补偿前的8.6μm缩小为5.7μm,而系统的聚焦功率密度提高了8倍,改善了装置性能。
Analysis shows that intensity of the focal spot will be decreased by the systemic optical aberration in a multi hundred TW ultra-short laser system. In order to increase the intensity of the far field by avoiding both axial chromatic and spherical aberrations caused by the lens as in the laser system, source of the aberrations was studied, simulation of layout was performed by ray tracing method and air-spaced doublet as the last spatial filter was specially designed to compensate those aberrations. Experimentation proves that the air-spaced doublet can diminish both axial chromatic and spherical aberration of the whole system effectively , the radius of the output focal spot decreases from 8.6 μm to 5.7 fire, and the intensity of the focus increases by eight times.
出处
《中国激光》
EI
CAS
CSCD
北大核心
2008年第10期1481-1484,共4页
Chinese Journal of Lasers
基金
国防科技重点实验室基金(9140c6803020605)
中国工程物理研究院面上基金(20060426)资助课题
关键词
光学设计
超短脉冲激光
色差
球差
焦斑
optical design
ultra short laser
chromatic aberration
spherical aberration
focal spot
作者简介
周凯南(1979-),男,黑龙江人,硕士研究生。主要从事高功率固体激光技术方面的研究。E—mail:zhoukn@mail.ustc.edu.cn
导师:朱启华(1969-),男,四川人,研究员,硕士生导师,主要从事高功率固体激光技术研究。E—mail:qhzhu@sina.com