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Output power improvement in an Yb-doped fiber laser with an additional unpumped Yb-doped fiber

机译:掺Yb光纤激光器中的输出功率和附加的非泵浦掺Yb光纤

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摘要

Master oscillator power amplifier (MOPA) technology has been widely used in high-power or ultrashort-pulse fiber laser systems because the shape of the laser pulse can be easily adjusted. Usually, the first amplification stage of a 1064 nm fiber laser uses the core-pumped Yb-doped fiber amplifier (YDFA); however, the gain or output power is limited owing to the strong amplifier spontaneous emission (ASE) in the 1030 nm band. This paper presents the improved output power in an YDFA by inserting an additional unpumped Yb-doped fiber, which absorbs the lost backward ASE emitted from the pump end. We achieved an output power increase of more than 10% in a low-power signal, and the increase in output power decreased as the signal power increased. Moreover, the insertion of an additional unpumped Yb-doped fiber restricted the unwanted 1030 nm lasing in a low-power signal.
机译:主振荡器功率放大器(MOPA)技术已被广泛用于高功率或超短脉冲光纤激光器系统中,因为可以轻松调整激光脉冲的形状。通常,1064 nm光纤激光器的第一放大级使用纤芯泵浦掺Yb光纤放大器(YDFA)。但是,由于1030 nm波段中强大的放大器自发发射(ASE),因此增益或输出功率受到限制。本文介绍了通过插入另一根未抽运的掺Yb的光纤来改善YDFA的输出功率,该光纤可吸收从泵端发出的反向ASE损耗。在低功率信号中,我们实现了超过10%的输出功率增加,并且随着信号功率的增加,输出功率的增加减少了。此外,插入另一条未泵浦的掺Yb光纤限制了低功率信号中不必要的1030 nm激光发射。

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