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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Yb$^{{bm 3+}}$ Ring Doping in High-Order-Mode Fiber for High-Power 977-nm Lasers and Amplifiers
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Yb$^{{bm 3+}}$ Ring Doping in High-Order-Mode Fiber for High-Power 977-nm Lasers and Amplifiers

机译:Yb $ ^ {{bm 3 +}} $高阶模光纤中的环形掺杂,用于大功率977 nm激光器和放大器

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摘要

We numerically model the performance of high-power 977-nm fiber lasers and amplifiers pumped at 915 nm, in which the Yb is doped in a ring inside the core of a high-order-mode (HOM) fiber. Light in the spatially coherent ${rm LP}_{{07}}$ mode is amplified in the fiber, and then coupled to the ${rm LP}_{{01}}$ mode by long-period gratings. For the laser, it is found that parasitic oscillation on the 1023-nm four-level transition is much less likely when the ring position coincides with a low-intensity point in the ${rm LP}_{{07}}$ mode pattern. For the amplifier, the maximum extractable energy is found to increase as the pump power is increased up to around 20 W, and then it becomes limited by amplified spontaneous emission to a few millijoules. This limit is not related to the use of HOM fiber, apart from the required fiber numerical aperture, and is independent of the core radius, Yb concentration, and doping profile. The HOM fiber does have the advantage of increasing the efficiency of energy extraction in the amplifier, when the doped ring position coincides with a maximum in the HOM intensity pattern.
机译:我们对915 nm泵浦的大功率977 nm光纤激光器和放大器的性能进行了数值建模,其中Yb掺杂在高阶模(HOM)光纤纤芯内部的环中。空间相干的$ {rm LP} _ {{07}} $模式的光在光纤中被放大,然后通过长周期光栅耦合到$ {rm LP} _ {{01}} $模式。对于激光器,发现当环形位置与$ {rm LP} _ {{07}} $模式模式中的低强度点重合时,在1023 nm四级跃迁上的寄生振荡可能性很小。 。对于放大器,发现最大抽取能量随着泵浦功率增加至20 W左右而增加,然后由于放大的自发辐射而被限制在几毫焦耳。除了所需的光纤数值孔径之外,该限制与HOM光纤的使用无关,并且与纤芯半径,Yb浓度和掺杂分布无关。当掺杂环的位置与HOM强度模式中的最大值重合时,HOM光纤确实具有提高放大器中能量提取效率的优势。

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