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Room Temperature High Power Mid-IR Diode Laser Bars for Atmospheric Sensing Applications

机译:用于大气传感应用的室温高功率中红外二极管激光棒

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Peak CW optical power from single 1-cm diode laser bars is advancing rapidly across all commercial wavelengths and the available range of emission wavelengths also continues to increase. Both high efficiency ~ 50% and > 100-W power InP-based CW bars have been available in bar format around 1500-nm for some time, as required for eye-safe illuminators and for pumping Er-YAG crystals. There is increasing demand for sources at longer wavelengths. Specifically, 1900-nm sources can be used to pump Holmium doped YAG crystals, to produce 2100-nm emission. Emission near 2100-nm is attractive for free-space communications and range-finding applications as the atmosphere has little absorption at this wavelength. Diode lasers that emit at 2100-nm could eliminate the need for the use of a solid-state laser system, at significant cost savings. 2100-nm sources can also be used as pump sources for Thulium doped solid-state crystals to reach even longer wavelengths. In addition, there are several promising medical applications including dental applications such as bone ablation and medical procedures such as opthamology. These long wavelength sources are also key components in infra-red-counter-measure systems. We have extended our high performance 1500-nm material to longer wavelengths through optimization of design and epitaxial growth conditions and report peak CW output powers from single 1-cm diode laser bars of 37W at 1910-nm and 25W at 2070-nm. 1-cm bars with 20% fill factor were tested under step-stress conditions up to 110-A per bar without failure, confirming reasonable robustness of this technology. Stacks of such bars deliver high powers in a collimated beam suitable for pump applications. We demonstrate the natural spectral width of ~18nm of these laser bars can be reduced to < 3-nm with use of an external Volume Bragg Grating, as required for pump applications. We review the developments required to reach these powers, latest advances and prospects for longer wavelength, higher power and higher efficiency.
机译:来自单个1厘米二极管激光棒的峰值连续波光功率正在所有商业波长范围内迅速发展,并且发射波长的可用范围也在不断增加。高效率〜50%和功率大于100 W的基于InP的CW棒已经有一段时间以1500 nm左右的棒格式提供了,这是人眼安全照明器和泵浦Er-YAG晶体所需的。对于更长波长的光源的需求不断增长。具体来说,可以使用1900 nm的源来泵浦掺Hol的YAG晶体,以产生2100 nm的发射。由于大气在该波长下几乎没有吸收,因此2100 nm附近的发射对于自由空间通信和测距应用很有吸引力。发射2100 nm的二极管激光器可以消除对固态激光器系统的使用需求,从而节省大量成本。 2100 nm光源也可以用作掺Th固态晶体的泵浦光源,以达到更长的波长。此外,还有几种有前途的医学应用,包括牙科应用(例如骨消融)和医学程序(例如眼科)。这些长波长源也是红外对策系统中的关键组件。通过优化设计和外延生长条件,我们已将高性能1500 nm材料扩展到更长的波长,并报告了来自1910nm的37W和2070nm的25W的单个1-cm二极管激光棒的峰值CW输出功率。在填充应力为20%的1-cm钢筋上,在高达110-A / bar的阶跃应力条件下进行了测试,没有出现故障,证明了该技术的合理坚固性。这种棒的堆叠在适合泵应用的准直光束中提供高功率。我们证明,根据泵浦应用的要求,使用外部体积布拉格光栅可以将这些激光棒的〜18nm的自然光谱宽度减小到<3nm。我们回顾了达到这些功率所需的发展,最新进展以及更长波长,更高功率和更高效率的前景。

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