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76 efficient cryogenically-cooled eyesafe diode laser for resonant pumping of Er-doped gain media

机译:76%高效低温冷却的人眼安全二极管激光器,用于共振泵浦掺Er的增益介质

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摘要

There is great interest in the development of high-power, high-efficiency InP-based broad area pump diode lasers operating in the 14xx-15xx nm band to be used for resonant-pumping of Er-doped solid state lasers. Cryogenic cooling of diode lasers can provide great benefit to performance, arising from the dramatic reduction in the threshold current and the increase in the diode's slope efficiency. These improvements are attributed to reduction in the non-radiative losses and leakage current associated with thermionic emission of carriers from the quantum well. This is, however, at the expense of a large increase in the diode voltage, limiting the power conversion efficiency at cryogenic temperatures. In this work, we report on the development of high-power, high-efficiency diode lasers and stacked arrays operating at 15xx-nm, which are specifically designed and optimized for operation at cryogenic temperatures. We show that the diode voltage defects under cryogenic operation can be greatly reduced through reducing the energy band offsets at the hetero-interface, and through material change to reduce the dopant ionization energy, effectively mitigating carrier freeze-out at low temperatures. Optical cavity designs and band engineering optimization are also explored for low intrinsic optical loss and low carrier leakage. A peak power conversion efficiency of >74% was demonstrated at a temperature of~100K in a 15xx-nm single emitter. Record high peak conversion efficiency of 71% and peak power of > 500 W were also demonstrated in a stacked array, under QCW pulses of 1 ms and 10 Hz.
机译:人们对开发工作在14xx-15xx nm波段的高功率,高效率,基于InP的广域泵浦二极管激光器非常感兴趣,该激光器可用于掺Er固态激光器的谐振泵浦。二极管激光器的低温冷却可以极大地提高性能,这是由于阈值电流的显着降低和二极管斜率效率的提高所致。这些改进归因于与​​从量子阱中载流子的热电子发射相关的非辐射损失和漏电流的减少。然而,这是以二极管电压的大幅增加为代价的,从而限制了低温下的功率转换效率。在这项工作中,我们报告了工作在15xx-nm的高功率,高效率二极管激光器和堆叠阵列的开发情况,这些激光器是为在低温下工作而专门设计和优化的。我们表明,通过降低异质界面处的能带偏移,以及通过改变材料以减少掺杂剂电离能,可以有效地减轻低温下的载流子冻结,可以大大降低低温操作下的二极管电压缺陷。还探索了光腔设计和频段工程优化,以降低固有光损耗和降低载流子泄漏。在15xx-nm单发射器中,在〜100K的温度下,证明了> 74%的峰值功率转换效率。在1 ms和10 Hz的QCW脉冲下,在堆叠阵列中还显示了创纪录的71%的高峰值转换效率和> 500 W的峰值功率。

著录项

  • 来源
    《Novel in-plane semiconductor lasers XII》|2013年|86401L.1-86401L.9|共9页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665;

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665;

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665;

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665;

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665;

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665;

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665;

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665,Department of Physics and Optical Engineering, Rose-Hulman Institute of Technology, Terre Haute, IN 47803;

    nLIGHT Corp., 5408 NE 88th Street, Bldg E, Vancouver, WA 98665;

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

    Diode lasers; high efficiency; high power; eye-safe; DPSS; Er:YAG; cryogenic;

    机译:二极管激光器;高效率;大功率;眼睛安全; DPSS; :: Y低温的;

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