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Development of a cascaded Raman fiber laser with 6.5W output power at 1480nm supported by detailed numerical simulations

机译:开发级联拉曼光纤激光器,在1480nm下通过详细数值模拟支持了6.5W输出功率

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Wavelengths around 1480 nm can be used to pump Er-doped systems [1] in order to overcome small efficiencies and huge heat loads typically related with pumping wavelengths in the 976 nm region. Additionally, Er-doped fibers suffer from fundamental limits in doping concentration, so that pump sources with high brightness to enable core pumping are preferred over multimode (976nm or 1480nm) laser diodes. One possible way to reach the 1480nm region with single-mode beam quality is to use a cascaded Raman fiber laser, in which a 1117 nm pump wavelength is shifted in multiple steps towards 1480 nm via the Raman effect. Several experimental [2] and theoretical studies [3,4] on high power cascaded Raman fiber lasers have been reported. Nevertheless, it's still a challenging process to develop such a system, especially, if no numerical simulation is available to support the optimization of the system. In this contribution, we report on the development of an all-fiber cascaded Raman laser supported by a detailed numerical analysis and on the comparison of simulated and measured results.
机译:在1480nm左右的波长可用于泵送ER掺杂的系统[1]以克服小的效率,并且巨大的热负荷通常与976nm区域中的泵浦波长有关。另外,ER掺杂的纤维在掺杂浓度中遭受基本限制,从而优选具有高亮度以使核泵浦的泵浦源优于多模(976nm或1480nm)激光二极管。通过单模光束质量达到1480nm区域的一种可能方法是使用级联拉曼光纤激光器,其中1117nm泵波长通过拉曼效应以多个步骤朝向1480nm的多个步骤移动。据报道了几个实验[2]和理论研究[3,4]在高功率级联拉曼纤维激光器上。然而,如果没有使用数值模拟来支持系统的优化,则开发这种系统仍然是一个具有挑战性的过程。在这一贡献中,我们报告了通过详细数值分析和模拟和测量结果的比较支持的全纤维级联拉曼激光器的开发。

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