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首页> 外文期刊>Optical Materials >The effects of atomic rubidium vapor on the performance of optical windows in Diode Pumped Alkali Lasers (DPALs)
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The effects of atomic rubidium vapor on the performance of optical windows in Diode Pumped Alkali Lasers (DPALs)

机译:原子Pump蒸气对二极管泵浦碱金属激光器(DPAL)中光学窗口性能的影响

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摘要

Diode Pumped Alkali Lasers (DPALs) suffers from damage to its optical windows due to atomic alkali exposure. DPALs are of great interest since they can combine multiple lasers to achieve higher laser output power, scalable to megawatts, with very high quantum efficiency. However before scaling to higher laser output beam power, damage to the optical windows from atomic alkali exposure in the gain medium has to be addressed. A DPAL emulator chamber was constructed for the purpose of evaluating different optical windows in a representative hot alkali rich environment typical of a DPAL gain cell. Sample optical windows of fused silica, alumina, magnesium fluoride and calcium fluoride were exposed in the DPAL emulator in order to qualitatively and quantitatively demonstrate and assess the damaging effects of the atomic rubidium vapor on the optical windows. Methodologies to examine the damage were developed for comparing exposed and unexposed optical windows. We found that damage to the optical windows due to the atomic rubidium can be quantified by means of changes in laser energy transmission through the optical window after rubidium exposure.
机译:二极管泵浦碱性激光器(DPAL)由于暴露于原子碱中而使其光学窗口受损。 DPAL非常令人感兴趣,因为它们可以组合多个激光器以实现更高的激光器输出功率,并具有非常高的量子效率,可扩展至兆瓦。但是,在缩放到更高的激光输出光束功率之前,必须解决增益介质中原子碱暴露对光学窗口的损害。构造DPAL仿真器室的目的是评估典型的典型DPAL增益单元的富碱热环境中的不同光学窗口。将熔融石英,氧化铝,氟化镁和氟化钙的样品光学窗口暴露在DPAL仿真器中,以便定性和定量地展示和评估原子rub蒸气对光学窗口的破坏作用。开发了用于检查损坏的方法,以比较暴露和未暴露的光学窗口。我们发现原子exposure对光学窗口的损害可以通过exposure暴露后通过光学窗口的激光能量传输的变化来量化。

著录项

  • 来源
    《Optical Materials》 |2013年第5期|843-851|共9页
  • 作者

    Lindsay OBrien Quarrie;

  • 作者单位

    New Mexico Institute of Mining and Technology Department of Materials Engineering 801 LeRoy Place. Socorro NM 87801 United States Air Force Research Laboratory AFRL/RDLC Laser CoE 3550 Aberdeen Avenue SE Kirtland AFB NM 87117-5776 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    optical materials; optical transmission; alkali laser; thin film; alkali resistant; DPAL;

    机译:光学材料光传输碱金属激光;薄膜;耐碱DPAL;

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