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970-nm ridge waveguide diode laser bars for high power DWBC systems

机译:用于大功率DWBC系统的970 nm脊形波导二极管激光棒

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Diode lasers are key components in material processing laser systems. While mostly used as pump sources for solid state or fiber lasers, direct diode laser systems using dense wavelength multiplexing have come on the market in recent years. These systems are realized with broad area lasers typically, resulting in beam quality inferior to disk or fiber lasers. We will present recent results of highly efficient ridge waveguide (RW) lasers, developed for dense-wavelength-beam-combining (DWBC) laser systems expecting beam qualities comparable to solid state laser systems and higher power conversion efficiencies (PCE). The newly developed RW lasers are based on vertical structures with an extreme double asymmetric large optical cavity. Besides a low vertical divergence these structures are suitable for RW-lasers with (10 μm) broad ridges, emitting in a single mode with a good beam quality. The large stripe width enables a lateral divergence below 10° (95 % power content) and a high PCE by a comparably low series resistance. We present results of single emitters and small test arrays under different external feedback conditions. Single emitters can be tuned from 950 nm to 975 nm and reach 1 W optical power with more than 55 % PCE and a beam quality of M~2 < 2 over the full wavelength range. The spectral width is below 30 pm FWHM. 5 emitter arrays were stabilized using the same setup. Up to now we reached 3 W optical power, limited by power supply, with 5 narrow spectral lines.
机译:二极管激光器是材料加工激光器系统中的关键组件。尽管大多数用于固态激光器或光纤激光器的泵浦光源,但近年来使用密集波长多路复用的直接二极管激光器系统已经投放市场。这些系统通常使用广域激光器来实现,从而导致光束质量不如磁盘或光纤激光器。我们将介绍为密集波光束合并(DWBC)激光系统开发的高效脊形波导(RW)激光器的最新成果,这些激光器期望光束质量可与固态激光器系统媲美并且功率转换效率(PCE)更高。新开发的RW激光器基于垂直结构,具有极高的双不对称大光腔。除了低的垂直发散度,这些结构还适合于具有(10μm)宽脊的RW激光器,以单模发射并具有良好的光束质量。较大的条带宽度可实现低于10°的横向发散(功率含量为95%)和较高的PCE(相对较低的串联电阻)。我们介绍了在不同外部反馈条件下单发射器和小型测试阵列的结果。单个发射器可以从950 nm调谐到975 nm,在15%的PCE范围内达到1 W的光功率,并且在整个波长范围内的光束质量为M〜2 <2。光谱宽度低于30 pm FWHM。使用相同的设置稳定了5个发射器阵列。到目前为止,我们通过5条窄谱线达到了3 W的光功率,受电源限制。

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