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Cryogenic ultra-high power infra-red diode laser bars

机译:低温超高功率红外二极管激光棒

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摘要

GaAs-based high power diode lasers are the most efficient source of optical energy, and are in wide use in industrial applications, either directly or as pump sources for other laser media. Increased output power per laser is required to enable new applications (increased optical power density) and to reduce cost (more output per component leads to lower cost in $/W). For example, laser bars in the 9×× nm wavelength range with the very highest power and efficiency are needed as pump sources for many high-energy-class solid-state laser systems. We here present latest performance progress using a novel design approach that leverages operation at temperatures below 0℃ for increases in bar power and efficiency. We show experimentally that operation at -55℃ increases conversion efficiency and suppresses thermal rollover, enabling peak quasi-continuous wave bar powers of P_(out) > 1.6 kW to be achieved (1.2 ms, 10 Hz), limited by the available current. The conversion efficiency at 1.6 kW is 53%. Following on from this demonstration work, the key open challenge is to develop designs that deliver higher efficiencies, targeting > 80% at 1.6 kW. We present an analysis of the limiting factors and show that low electrical resistance is crucial, meaning that long resonators and high fill factor are needed. We review also progress in epitaxial design developments that leverage low temperatures to enable both low resistance and high optical performance. Latest results will be presented, summarizing the impact on bar performance and options for further improvements to efficiency will also be reviewed.
机译:基于GaAs的高功率二极管激光器是最有效的光能来源,并且直接或作为其他激光介质的泵浦源被广泛用于工业应用。为了实现新的应用(增加的光功率密度)并降低成本(每个组件更多的输出可以降低$ / W的成本),需要增加每个激光器的输出功率。例如,对于许多高能级固态激光器系统,需要具有最高功率和效率的9××nm波长范围内的激光棒作为泵浦光源。我们在这里展示了使用新颖的设计方法的最新性能进展,该方法利用了0℃以下的温度下的操作来提高棒功率和效率。我们通过实验表明,在-55℃下运行可提高转换效率并抑制热翻转,从而使P_(out)> 1.6 kW的准连续波峰值功率达到(1.2 ms,10 Hz),受可用电流限制。 1.6 kW时的转换效率为53%。继此演示工作之后,关键的开放挑战是开发可提供更高效率的设计,目标是在1.6 kW时大于80%。我们对限制因素进行了分析,结果表明低电阻至关重要,这意味着需要长谐振器和高填充系数。我们还回顾了利用低温实现低电阻和高光学性能的外延设计开发的进展。将介绍最新结果,总结对吧台性能的影响,并且还将审查进一步提高效率的选项。

著录项

  • 来源
    《Novel in-plane semiconductor lasers XIII》|2014年|90021I.1-90021I.11|共11页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489 Berlin, Germany;

    Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489 Berlin, Germany;

    Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489 Berlin, Germany;

    Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489 Berlin, Germany;

    Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489 Berlin, Germany;

    Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489 Berlin, Germany;

    Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489 Berlin, Germany;

    Ferdinand-Braun-Institut, Leibniz-Institut fuer Hoechstfrequenztechnik, Gustav-Kirchhoff-Str. 4, 12489 Berlin, Germany;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    diode lasers; high power; high efficiency; low temperature; pump laser;

    机译:二极管激光器大功率;高效率;低温;泵浦激光;

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