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New alternative for laser lithotropsy-long pulse passively q-switched solid-state laser with fiber-based resonator

机译:具有基于光纤谐振器的激光型材长脉冲的新替代方案,具有基于光纤谐振器的Q开关固态激光器

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This paper presents an overview of the important processes which are responsible for stone fragmentation. The efficiency of these processes in dependence of wavelength and laser pulse duration is discussed. Beside shockwaves and cavitation phenomena the role of a compressional shock acting on the stone and the plasma confinement is emphasized. As a conclusion the concept of a passively Q- switched solid state laser with a fiber-based resonator which prolongs the pulse duration is presented.
机译:本文提出了负责石头碎片的重要进程的概述。讨论了依赖波长和激光脉冲持续时间的这些过程的效率。在冲击波和空化现象旁边,强调了对石头上的压缩冲击和等离子体限制的作用。作为结论,呈现了一种具有延长脉冲持续时间的光纤谐振器的被动Q切换固态激光器的概念。

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