{"title":"Numerical investigation into the Nd doped YAG rod grooving impact on the sunlight-pumped-laser performance","authors":"Mehellou Said, Noureddine Hamrouni, Rehouma Ferhat","doi":"10.31349/revmexfis.70.041301","DOIUrl":null,"url":null,"abstract":"This paper presents a numerical analysis of the impact of grooving the Nd doped YAG rod on the sunlight-pumped lasers performance. The study analyzes laser systems that utilize side-exciting and end-side-exciting approaches to activate both grooved and non-grooved Nd doped YAG laser rods. The effects of the rod surface groove on the performance of the sunlight-pumped-lasers are thoroughly examined using ZEMAX© and LASCAD© software. To excite the grooved and non-grooved Nd doped YAG rods alternately, a ring-array sunlight flux concentrator is employed. Moreover, in the side-exciting technique, the head of the laser system contains a rectangular light guide of an extremely transparent glass made from fusing silica and an excitation cavity with a V-shaped configuration, housing the Nd doped YAG rod. This exciting method with a grooved laser rod resulted in a 13.70% increase in laser power and a 28.20% reduction in stress intensity compared to the non-grooved rod. In the end-side-exciting technique, the head of the laser system comprises an aspheric lens made of a fused silica glass and a conical-shaped excitation cavity, accommodating the Nd doped YAG rod. Results indicate that using grooved laser rod in this exciting system did not lead to an amelioration in output laser power. However, this technique enhanced the stress intensity by a reduction of 35.03%.","PeriodicalId":207412,"journal":{"name":"Revista Mexicana de Física","volume":"1987 6","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-07-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Revista Mexicana de Física","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.31349/revmexfis.70.041301","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
掺钕 YAG 棒开槽对阳光泵浦激光器性能影响的数值研究
本文对掺钕钇钕石榴石(Nd doped YAG)棒开槽对阳光泵浦激光器性能的影响进行了数值分析。研究分析了利用侧面激发和端面激发方法激活开槽和不开槽掺钕 YAG 激光棒的激光系统。利用 ZEMAX© 和 LASCAD© 软件对激光棒表面凹槽对阳光泵浦激光器性能的影响进行了深入研究。为了交替激发有凹槽和无凹槽的掺钕钇钕石榴石激光棒,采用了环形阵列太阳光流量集中器。此外,在侧面激发技术中,激光系统的头部包含一个由熔融石英制成的极透明玻璃制成的矩形导光板,以及一个容纳掺钕 YAG 棒的 V 形激发腔。与不带凹槽的激光棒相比,这种带凹槽激光棒的激发方法使激光功率提高了 13.70%,应力强度降低了 28.20%。在端面激发技术中,激光系统的头部包括一个由熔融石英玻璃制成的非球面透镜和一个锥形激发腔,其中可容纳掺钕 YAG 棒。结果表明,在这种激励系统中使用带凹槽的激光棒并不会提高输出激光功率。不过,这种技术增强了应力强度,降低了 35.03%。
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