With appropriate choice of laser medium parameters, high pumping efficiency and good pump uniformity can be obtained for corner-pumped composite slab lasers.
通过选择合理的激光介质结构参数,角泵浦方式也能得到高的泵浦效率、较好的泵浦均匀性和激光输出。
Based on our investigation results, some key problems and techniques concerning slab lasers, such as the thermal effects, pumping cavity and resonators, are analyzed physically.
结合作者部分工作,对板条激光器的热效应、聚光器和光学谐振腔等关键问题和技术进行了物理分析。
The heat generation efficiency of slab lasers is analysed. A new method of measuring the heat generation efficiency is proposed and the measuring results for slab and rod lasers are given.
在分析板条激光器发热效率基础上,提出了发热效率的测量新方法,给出了板条器件和圆棒器件的测量结果。
It has been shown, that the slab geometry solid-state lasers offer the possibility of achieving the kilowatt power level as well as having good beam quality.
分析表明,板条状几何结构固体激光器提供了达到千瓦级功率水平同时又保持良好光束质量的可能性。
The report emphases on face-pumped solid-state lasers(or slab solid-state lasers), diode laser pumped solid-state lasers and laser material processing.
面泵浦固体激光器(即板条式激光器)、半导体二极管泵浦固体激光器和激光加工是这份报告的重点。
A similarity model describing the physics of slab target X ray lasers is constituted from the ideal hydrodynamic equations.
从等离子体的流体动力学方程出发,导出了描述激光辐照平板靶条件下产生x射线激光物理过程的自相似方程。
The use of slab geometric structure in laser can greatly reduce thermal effects of laser medium, but further analysis of its impact is necessary for optimizing the efficiency of lasers.
激光器中激光介质采用板条状几何结构可以极大地降低它的热效应,但仍然需要进一步分析其影响,进而优化激光器效率。
In this paper, some new developments of slab geometry solid-state lasers are reported and the comments on their prospects and problems are made.
本文报道了板条状几何结构固体激光器研究的一些新的进展,对板条激光器的前景和存在问题作了评述。
In this paper, misalignment sensitivity of resonators for slab solid-state lasers has been studied. Curves with sensitive change have been given also.
本文研究了板条状固体激光器光腔的失调灵敏度。给出了其相应的变化曲线。
In this paper, misalignment sensitivity of resonators for slab solid-state lasers has been studied. Curves with sensitive change have been given also.
本文研究了板条状固体激光器光腔的失调灵敏度。给出了其相应的变化曲线。
应用推荐