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Efficient blue generation from all-solid-state Q-switched Nd:YAG lasers

机译:全固态Q开关Nd:YaG激光器产生高效蓝光

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摘要

This thesis describes work carried out at Southampton University that has been directed towards achieving high-power all-solid-state blue sources using two low-gain transitions of Nd:YAG. Diode-end-pumping is used to obtain efficient laser performance. The thesis attempts to tackle some of the obstacles to power scaling Q-switched low-gain lasers that use diode-end-pumping schemes.A 1319nm Q-switched Nd:YAG laser is described that produces a 17KHz pulse train consisting of 353 watt peak power pulses delivering an average power of 780mW for doubling. Periodically poled lithium niobate (PPLN) is used to double to 659.5nm. A 54% second harmonic conversion efficiency produces 360mW of red average power. Sum frequency mixing of the red and infra-red in a second PPLN sample is achieved with a third order grating. A pulsed blue output (13.7 watts peak) at 439.7nm is achieved with good beam quality and an average power of 35mW.A technique is described to aid power-scaling of polarised laser sources. Analysis of the quarter wave-plate technique demonstrates that the technique will be highly beneficial in reducing the depolarisation loss in low-gain solid-state lasers. The technique is applied to a 946nm laser and a 1319nm laser. Depolarisation of the 946nm source is reduced from 1.66% to 0.0006% and depolarisation of the 1319nm laser is reduced from 1.2% to 0.015%.The quarter wave-plate technique is implemented in a high power 946nm laser that is Q-switched for low repetition rates. 0.53mJ is extracted with a 5.3KW peak pulse power at 1 kHz repetition rate. The 946nm output is used to generate 473nm blue light via second harmonic generation in non-critically phase-matched LBO at 329° centigrade. An average power of 370mW is demonstrated with a conversion efficiency of 21% at 4kHz repetition rate.
机译:本文介绍了在南安普敦大学进行的工作,该工作旨在利用Nd:YAG的两个低增益跃迁实现高功率全固态蓝光源。二极管端泵浦用于获得有效的激光性能。本文试图解决使用二极管端抽方案对Q开关低增益激光器进行功率缩放时遇到的一些障碍。描述了一种1319nm Q开关Nd:YAG激光器,该激光器产生由353瓦峰值组成的17KHz脉冲序列功率脉冲可提供平均780mW的功率翻倍。周期性极化的铌酸锂(PPLN)用于加倍至659.5nm。 54%的二次谐波转换效率产生360mW的红色平均功率。用三阶光栅实现第二个PPLN样本中红色和红外的总频率混合。以良好的光束质量和35mW的平均功率实现了在439.7nm处的脉冲蓝光输出(峰值为13.7瓦)。描述了一种有助于偏振激光源功率定标的技术。对四分之一波片技术的分析表明,该技术在降低低增益固态激光器的去极化损耗方面将非常有益。该技术应用于946nm激光器和1319nm激光器。 946nm光源的去极化从1.66%降低到0.0006%,1319nm激光器的去极化从1.2%降低到0.015%。四分之一波片技术是在高功率946nm激光器中实现的,Q开关可实现低重复性费率。以5.3 kHz峰值脉冲功率以1 kHz的重复频率提取0.53mJ。 946nm输出用于在329°C的非临界相位匹配LBO中通过二次谐波生成产生473nm蓝光。在4kHz重复频率下,平均功率为370mW,转换效率为21%。

著录项

  • 作者

    Felgate Nigel Stephen;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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