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Yellow laser light generation by frequency doubling of the output from a master oscillator fiber power amplifier system

机译:通过将主振荡器光纤功率放大器系统的输出倍频产生黄色激光

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We present a power-scalable approach for yellow laser-light generation based on standard Ytterbium (Yb) doped fibers. To force the cavity to lase at 1154 nm, far above the gain-maximum, measures must be taken to fulfill lasing condition and to suppress competing amplified spontaneous emission (ASE) in the high-gain region. To prove the principle we built a fiber-laser cavity and a fiber-amplifier both at 1154 nm. In between cavity and amplifier we suppressed the ASE by 70 dB using a fiber Bragg grating (FBG) based filter. Finally we demonstrated efficient single pass frequency doubling to 577 nm with a periodically poled lithium niobate crystal (PPLN). With our linearly polarized 1154 nm master oscillator power fiber amplifier (MOFA) system we achieved slope efficiencies of more than 15 % inside the cavity and 24 % with the fiber-amplifier. The frequency doubling followed the predicted optimal efficiency achievable with a PPLN crystal. So far we generated 1.5 W at 1154nm and 90 mW at 577 nm. Our MOFA approach for generation of 1154 nm laser radiation is power-scalable by using multi-stage amplifiers and large mode-area fibers and is therefore very promising for building a high power yellow laser-light source of several tens of Watt.
机译:我们提出了一种基于标准Y(Yb)掺杂光纤的黄色激光产生功率可扩展方法。为了迫使腔在远高于最大增益的1154 nm处发射激光,必须采取措施满足发射条件并抑制高增益区域中的竞争性放大自发发射(ASE)。为了证明这一原理,我们建立了一个在1154 nm处的光纤激光器腔和一个光纤放大器。在腔和放大器之间,我们使用基于光纤布拉格光栅(FBG)的滤波器将ASE抑制了70 dB。最终,我们证明了周期性极化铌酸锂晶体(PPLN)的有效单通频率翻倍至577 nm。借助我们的线性偏振1154 nm主振荡器功率光纤放大器(MOFA)系统,我们在腔体内实现了超过15%的斜率效率,而通过光纤放大器实现了24%的斜率效率。倍频遵循PPLN晶体可实现的预期最佳效率。到目前为止,我们在1154nm处产生了1.5 W的功率,在577 nm处产生了90 mW的功率。我们的MOFA方法用于产生1154 nm激光辐射,可以通过使用多级放大器和大模式面积光纤来实现功率缩放,因此对于构建几十瓦的高功率黄色激光光源非常有希望。

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