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Development of diode lasers for pumping high power ultrashort pulse lasers

机译:用于泵浦大功率超短脉冲激光器的二极管激光器的开发

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Ultrashort pulse lasers have found increased applications in material processing with particular emphasis on laser-based micromachining applications, biomedical areas such as hard tissues ablating, and military fields. A new era of ultrashort pulse lasers was started when diode laser pumping gradually became more and more feasible, especially after the “high-power diode lasers” became available. In recent years, more and more wavelengths were covered by high-power diode lasers so that a large variety of solid-state laser and fiber laser materials could be diode-pumped or became good candidates for direct diode pumping. Diode lasers are playing a key role in the technology advancement and wide spread application of high power ultrashort pulse lasers. On the other hand, high power ultrashort pulse solid state lasers and fiber lasers demand higher performance and more reliable diode lasers to be developed. To achieve high pumping efficiency and reduce the thermal load of a high power ultrashort pulse laser, the spectrum of the pumping diode laser should be narrow enough to be mostly within the absorption region of the gain medium and more importantly the wavelength of should be kept near the absorption peak of the gain medium over the operation temperature and condition. Also the beam uniformity and brightness of the pumping source significantly affects the beam quality of a high power ultrashort pulse laser. Furthermore, for different applications, the requirements of the pumping diode lasers are different. In this paper, the development of diode lasers for pumping high power ultrashort pulse solid state lasers and fiber lasers is reviewed and discussed. We review the technology development trend of high power semiconductor lasers, including single emitters, bars, horizontal bar arrays and vertical bar stacks. We will discuss the strategies and approaches to achieve high output power, high brightness, narrow spectrum, low “smile” and lo-ng lifetime. Different diodes pumped ultrashort lasers and amplifiers are demonstrated to illustrate the effect of the pumping diode lasers. For example, the shortest pulse with 150fs are generated in Yb fiber laser with ring cavity and intracavity dispersion control using the single mode(SM) diodes with stable narrow linewidth by fiber grating. After two-stage dispersion compensation, the clean shortest pulses less than 30fs are generated. In high average power fiber amplifier, the largest pulse energy of 150uJ are generated at 30kHz with pulse width of 525fs after bulk grating compressor using high power multimode diodes by large size pigtailed fiber.
机译:超短脉冲激光器在材料加工中的应用越来越多,特别是基于激光的微加工应用,诸如硬组织消融的生物医学领域以及军事领域。当二极管激光器泵浦逐渐变得越来越可行时,特别是在“大功率二极管激光器”问世之后,超短脉冲激光器的新时代开始了。近年来,大功率二极管激光器覆盖了越来越多的波长,因此可以对各种固态激光器和光纤激光器材料进行二极管泵浦,或者成为直接泵浦二极管的良好选择。二极管激光器在高功率超短脉冲激光器的技术进步和广泛应用中起着关键作用。另一方面,高功率超短脉冲固态激光器和光纤激光器需要更高的性能和更可靠的二极管激光器。为了获得高泵浦效率并降低高功率超短脉冲激光器的热负荷,泵浦二极管激光器的光谱应足够窄,以使其大部分位于增益介质的吸收区内,更重要的是,应将其波长保持在附近。在工作温度和条件下增益介质的吸收峰。同样,泵浦源的光束均匀性和亮度也会显着影响高功率超短脉冲激光器的光束质量。此外,对于不同的应用,泵浦二极管激光器的要求也不同。本文综述并讨论了用于泵浦大功率超短脉冲固态激光器和光纤激光器的二极管激光器的发展。我们回顾了高功率半导体激光器的技术发展趋势,包括单发射器,条形,水平条形阵列和垂直条形堆叠。我们将讨论实现高输出功率,高亮度,窄光谱,低“微笑”和低寿命的策略和方法。演示了不同的二极管泵浦超短激光器和放大器,以说明泵浦二极管激光器的效果。例如,在具有环形腔和腔内色散控制的Yb光纤激光器中,使用具有稳定窄线宽的单模(SM)二极管通过光纤光栅产生150fs的最短脉冲。经过两级色散补偿后,会产生小于30fs的干净的最短脉冲。在高平均功率光纤放大器中,使用大功率尾纤的大功率多模二极管在体光栅压缩器之后,在30kHz时产生最大脉冲能量150uJ,脉冲宽度为525fs。

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